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Publications

[148]Experimental observation of Shapiro-steps in colloidal monolayers driven across time-dependent substrate potentials
T. Brazda, A. C. July, and C. Bechinger
Soft Matter 13, 4024 - 4028 (2017)
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[147]Measurement of second-order response without perturbation
Laurent Helden, Urna Basu, Matthias Krüger, and Clemens Bechinger
EPL 116, 60003 (2016)
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[146]Interactions of colloidal particles and droplets with water-oil interfaces measured by total internal reflection microscopy
Laurent Helden, Kilian Dietrich, and Clemens Bechinger
Langmuir 32 (51), 13752 (2016)
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[145]Phototaxis of Synthetic Microswimmers in Optical Landscapes
Lozano C., ten Hagen B., Löwen H., and Bechinger C.
Nature Communications 7, 12828 (2016)
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[144]External control strategies for self-propelled particles: optimizing navigational efficiency in the presence of limited resources
Haeufle D. F. B., Bäuerle T., Steiner J., Bremicker L., Schmitt S., and Bechinger C.
Phys. Rev. E 94, 012617 (2016)
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[143]Active Particles in Complex and Crowded Environments
Clemens Bechinger, Roberto Di Leonardo, Hartmut Löwen, Charles Reichhardt, Giorgio Volpe, and Giovanni Volpe
Rev. Mod. Phys. 88, 045006 (2016)
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[142]Dynamics of self-propelled Janus particles in viscoelastic fluids
Juan Ruben Gomez-Solano, Alex Blokhuis, and Clemens Bechinger
Phys. Rev. Lett. 116, 138301 (2016)
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[141]Direct Relations between Morphology and Transport in Boolean Models
Christian Scholz, Frank Wirner, Michael Klatt, Daniel Hirneise, Gerd E. Schröder-Turk, Klaus Mecke, and Clemens Bechinger
Phys. Rev. E 92, 043023 (2015)
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[140]Transient dynamics of a colloidal particle driven through a viscoelastic fluid
Juan Ruben Gomez-Solano, and Clemens Bechinger
New J. Physics 17, 103032 (2015)
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A perspective for this article:
After stress comes relax(ation)
Lucio Isa
New J. Phys. 17 (2015) 111003
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[139]Synthetic micro-swimmers near surfaces
J. Katuri, J. Simmchen, L. Helden, L. Soler, N. Nitzsche, C. Bechinger, and S. Sanchez
(submitted) , (2015)
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[138]Can the self-propulsion of anisotropic microswimmers be described by using forces and torques?
Borge ten Hagen, Raphael Wittkowski, Daisuke Takagi, Felix Kümmel, Clemens Bechinger, and Hartmut Löwen
J. Phys. Cond. Mat. 27, 194110 (2015)
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[137]Formation, compression and surface melting of colloidal clusters by active particles
Felix Kümmel, Parmida Shabestari, Celia Lozano, Giovanni Volpe, and Clemens Bechinger
Soft Matter 11, 6187 - 6191 (2015)
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[136]Non-equilibrium work distribution for interacting colloidal particles under friction
Juan Ruben Gomez-Solano, Christoph July, Jakob Mehl, and Clemens Bechinger
New J. Phys. 17, 045026 (2015)
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[135]Direct measurement of thermophoretic forces
Laurent Helden, Ralf Eichhorn, Clemens Bechinger
Soft Matter 11, 2379 - 2386 (2015)
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[134]Effect of confinement on the mode dynamics of dipole clusters
A. Schella, A. Melzer, C. July, and C. Bechinger
Soft Matter 11 (6), 1197-1207 (2015)
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[133]Probing linear and nonlinear microrheology of viscoelastic fluids
J. R. Gomez-Solano, and C. Bechinger
EPL 108, 54008 (2014)
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[132]Periodic average structures of colloidal quasicrystals
Lamiss Zaidouny, Thomas Bohlein, Johannes Roth, and Clemens Bechinger
Soft Matter 10 (43), 8705-8710 (2014)
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[131]Enhanced dispersion by elastic turbulence in porous media
Christian Scholz, Frank Wirner, Juan Ruben Gomez-Solano, and Clemens Bechinger
EPL 107, 54003 (2014)
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[130]Gravitaxis of asymmetric self-propelled colloidal particles
Borge ten Hagen, Felix Kümmel, Raphael Wittkowski, Daisuke Takagi, Hartmut Löwen, and Clemens Bechinger
Nature Comm. 5, 4829 (2014)
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[129]Geometrical interpretation of long-time tails of first-passage time distributions in porous media with stagnant parts
Frank Wirner, Christian Scholz, and Clemens Bechinger
Phys. Rev. E. 90, 013025 (2014)
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[128]Circular motion of asymmetric self-propelling particles: Reply
Felix Kümmel, Borge ten Hagen, Raphael Wittkowski, Daisuke Takagi, Ivo Buttinoni, Ralf Eichhorn, Giovanni Volpe, Hartmut Löwen, and Clemens Bechinger
Phys. Rev. Lett. 113, 029802 (2014)
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[127]Light-induced phase transitions of colloidal monolayers with crystalline order
L. Zaidouny, T. Bohlein, R. Roth and C. Bechinger
Soft Matter 9 (38), 9230 - 9236 (2013)
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[126]Dynamical clustering and phase separation in suspensions of self-propelled colloidal particles
I. Buttinoni, J. Bialke, F. Kümmel, H. Löwen, C. Bechinger, and T. Speck
Phys. Rev. Lett. 110, 238301 (2013)
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[125]Circular motion of asymmetric self-propelling particles


Felix Kümmel, Borge ten Hagen, Raphael Wittkowski, Ivo Buttinoni, Ralf Eichhorn, Giovanni Volpe, Hartmut Löwen, Clemens Bechinger
Phys. Rev. Lett. 110, 198302 (2013)
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[124]Nucleation and growth of thermoreversible polymer gels
J. R. Gomez-Solano, V. Blickle, and C. Bechinger
Phys. Rev. E. 87, 012308 (2013)
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[123]Separation of chiral colloidal particles in a helical flow field
Maria Aristov, Ralf Eichhorn, and Clemens Bechinger
Soft Matter 9 (8), 2525 - 2530 (2013)
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[122]Permeability of porous materials determined from the Euler characteristic
Christian Scholz, Frank Wirner, Jan Götz, Ulrich Rüde, Gerd E. Schröder-Turk, Klaus Mecke, and Clemens Bechinger
Phys. Rev. Lett. 109, 264504 (2012)
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[121]Noninvasive measurement of dissipation in colloidal systems
Boris Lander, Jakob Mehl, Valentin Blickle, Clemens Bechinger, and Udo Seifert
Phys. Rev. E 86, 030401(R) (2012)
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[120]Measurement of permeability of microfluidic porous media with finite-sized colloidal tracers
Christian Scholz, Frank Wirner, Yujie Li, and Clemens Bechinger
Experiments in Fluids 53, 1327 - 1333 (2012)
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[119]Experimental Observation of Directional Locking and Dynamical Ordering of Colloidal Monolayers Driven across Quasiperiodic Substrates
Thomas Bohlein, and Clemens Bechinger
Phys. Rev. Lett. 109, 058301 (2012)
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[118]Role of hidden slow degrees of freedom in the fluctuation theorem
Jakob Mehl, Boris Lander, Clemens Bechinger, Valentin Blickle, and Udo Seifert
Phys. Rev. Lett 108, 220601 (2012)
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[117]Observation of kinks and antikinks in colloidal monolayers driven across ordered surfaces
Thomas Bohlein, Jules Mikhael, and Clemens Bechinger
Nature Materials 11, 126 - 130 (2012)
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[116]Realization of a micrometre-sized stochastic heat engine
V. Blickle, and C. Bechinger
Nature Physics 8, 143 - 146 (2012)
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[115]Active Brownian motion tunable by light
I. Buttinoni, G. Volpe, F. Kümmel, G. Volpe, and C. Bechinger
J. Phys.: Cond. Mat. 24, 284129 (2012)
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[114]Shear thinning and local melting of colloidal crystals
R. P. A. Dullens, and C. Bechinger
Phys. Rev. Lett. 107, 138301 (2011)
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[113]Microswimmers in Patterned Environments
Giovanni Volpe, Ivo Buttinoni, Dominik Vogt, Hans-Jürgen Kümmerer, and Clemens Bechinger
Soft Matter 7, 8810 - 8815 (2011)
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[112]Criticality and phase separation in a two-dimensional binary colloidal fluid induced by the solvent critical behavior
O. Zvyagolskaya, A. Archer, and C. Bechinger
EPL 96, 28005 (2011)
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[111]Pattern formation in colloidal explosions
Arthur V. Straube, Ard A. Louis, Jörg Baumgartl, Clemens Bechinger, and Roel P. A. Dullens
EPL 94, 48008 (2011)
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[110]Salt-induced changes of colloidal interactions in critical mixtures
Ursula Nellen, Julian Dietrich, Laurent Helden, Shirish Chodankar, Kim Nygard, J. Friso van der Veen, and Clemens Bechinger
Soft Matter 7, 5360 (2011)
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[109]Trapping colloids near chemical stripes via critical Casimir forces
Matthias Tröndle, Olga Zvyagolskaya, Andrea Gambassi, Dominik Vogt, Ludger Harnau, Clemens Bechinger, and Siegfried Dietrich
Mol. Phys. 109, 1169 (2011)
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[108]Force measurement in the presence of Brownian noise: Equilibrium distribution method vs. Drift method
Thomas Brettschneider, Giovanni Volpe, Laurent Helden, Jan Wehr, Clemens Bechinger
Phys. Rev. E 83, 041113 (2011)
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[107]Phase behavior of colloidal monolayers on quasiperiodic Substrates
Jules Mikhael, Günter Gera, Thomas Bohlein, and Clemens Bechinger
Soft Matter 7, 1352 (2011)
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[106]Proliferation of anomalous symmetries in colloidal monolayers subjected to quasiperiodic light fields
Jules Mikhael, Michael Schmiedeberg, Sebastian Rausch, Johannes Roth, Holger Stark, and Clemens Bechinger
PNAS 107, 7216 (2010)
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[105]Influence of noise on force measurements
G. Volpe, L. Helden, T. Brettschneider, J. Wehr, and C. Bechinger
Phys. Rev. Lett. 104, 170602 (2010)
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[104]Morphological wetting transitions at ring-shaped surface domains
C. Schäfle, M. Brinkmann, C. Bechinger, P. Leiderer, R. Lipowsky
Langmuir 26, 11878 (2010)
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[103]Experimental Accessibility of Generalized Fluctuation-Dissipation Relations for Nonequilibrium Steady States
Jakob Mehl, Valentin Blickle, Udo Seifert, and Clemens Bechinger
Phys. Rev. E 82, 032401 (2010)
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[102]Archimedean-like colloidal tilings on substrates with decagonal and tetradecagonal symmetry
M. Schmiedeberg, J. Mikhael, S. Rausch, J. Roth, L. Helden, C. Bechinger, and H. Stark
Eur. Phys. J. E 32, 25 (2010)
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[101]Novel perspectives for the application of total internal reflection microscopy
G. Volpe, T. Brettschneider, L. Helden, C. Bechinger
Opt. Express 17, 23975 (2009)
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[100]Tunability of Critical Casimir Interactions by Boundary Conditions
U. Nellen, L. Helden, C. Bechinger
EPL 88, 26001 (2009)
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[99]Critical Casimir effect in classical binary liquid mixtures
A. Gambassi, A. Maciolek, C. Hertlein, U. Nellen, L. Helden, C. Bechinger and S. Dietrich
Phys. Rev. E 80, 061143 (2009)
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[98]Relaxation of a colloidal particle into a nonequilibrium steady state
V. Blickle, J. Mehl, C. Bechinger
Phys. Rev. E 79, 060104(R) (2009)
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[97]The critical Casimir effect: Universal fluctuation-induced forces at work
A. Gambassi, C. Hertlein, L. Helden, S. Dietrich, C. Bechinger
Europhysics News 48, 18 (2009)
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[96]Critical Casimir forces in colloidal suspensions on chemically patterned surfaces
F. Soyka, O.Zvyagolskaya, C. Hertlein, L. Helden, C. Bechinger
Phys. Rev. Lett. 101, 208301 (2008)
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[95]In-situ assembly of linked geometrically-coupled microdevices
T. Sawetzki, S. Rahmouni, C. Bechinger, D.W.M. Marr
PNAS 105, 20141 (2008)
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[94]Archimedean-like tiling on decagonal quasicrystalline surfaces
J. Mikhael, J. Roth, L. Helden, C. Bechinger
Nature 454, 501 (2008)
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[93]Phonon dispersion curves of two-dimensional colloidal crystals: On the wavelength dependence of friction
J. Baumgartl, J. Dietrich, J. Dobnikar, C. Bechinger, H.H.v. Grünberg
Soft Matter 4, 2199 (2008)
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[92]Diffusion of colloidal particles in a tilted periodic potential: Theory versus experiment
M. Evstigneev, O.Zvyagolskaya, S. Bleil, R.Eichhorn, C. Bechinger, P. Reimann
Phys. Rev. E 77, 041107 (2008)
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[91]Direct measurement of critical Casimir forces
C. Hertlein, L. Helden, A. Gambassi, S. Dietrich, C. Bechinger
Nature 451, 172 (2008)
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[90]Experimental Verification of an Exact Evanescent Light Scattering Model for TIRM
C. Hertlein, N. Riefler, E. Eremina, T. Wriedt, Y. Eremin, L. Helden, C. Bechinger
Langmuir 24, 1 (2008)
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[89]Tailoring of phononic band structures in colloidal crystals
J. Baumgartl, M. Zvyagolskaya, C. Bechinger
Phys. Rev. Lett. 99, 205503 (2007)
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[88]Lattice dynamics of two-dimensional colloidal crystals subject to external light potentials
H.H.v. Grünberg, J. Baumgartl
Phys. Rev. E 75, 051406 (2007)
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[87]Experimental observation of structural crossover in binary mixtures of colloidal hard spheres
J. Baumgartl, R. P. A. Dullens, M. Dijkstra, R. Roth, C. Bechinger
Phys. Rev. Lett. 98, 198303 (2007)
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[86]Characterizing potentials by a generalized Boltzmann factor
V.Blickle, T. Speck, U. Seifert, C. Bechinger
Phys. Rev. E 75, 060101(R) (2007)
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[85]The Einstein relation generalized to non-equilibrium
V.Blickle, T. Speck, C. Lutz, U. Seifert, C. Bechinger
Phys. Rev. Lett. 98, 210601 (2007)
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[84]Distribution of entropy production for a colloidal particle in a nonequilibrium steady state
T. Speck, V.Blickle, C. Bechinger, U. Seifert
Europhys. Lett. 79, 30002 (2007)
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[83]Colloids on patterned substrates
C. Bechinger, E. Frey
in Soft Matter, edited by G. Gompper, M. Schick (Wiley-VCH) 3, 87 (2007)
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[82]Comparison of T-matrix method with discrete sources method applied for total internal reflection
N. Riefler, E. Eremina, C. Hertlein, L. Helden, Y. Eremin, T. Wriedt, C. Bechinger
J. Quant. Spec. & Rad. Transfer 106, 464-474 (2007)
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[81]Directing Brownian motion by oscillating barriers
S. Bleil, P. Reimann, C. Bechinger
Phys. Rev. E 75, 031117 (2007)
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[80]Optical microscopy measurement of pair correlation functions
A. Ramirez-Saito, C. Bechinger, J.L. Arauz-Lara
Phys. Rev. E 74, 030401(R) (2006)
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[79] Single particle evanescent light scattering simulations for total internal reflection microscopy
L. Helden, E. Eremina, N. Riefler, C. Hertlein, C. Bechinger, Y. Eremin, T. Wriedt
Applied Optics 45, 7299-7308 (2006)
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[78]Field-mediated self-assembly and actuation of highly-parallel microfluidic devices
S. Bleil, D.W.M. Marr, C. Bechinger
Appl. Phys. Lett. 88, 263515 (2006)
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[77]Stochastic resonance versus resonant activation
C. Schmitt, B. Dybiec, P. Hänggi, C. Bechinger
Europhys. Lett. 74, 937 (2006)
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[76]Like charge attraction in confinement: Myth or truth?
J. Baumgartl, J.L. Arauz-Lara, C. Bechinger
Soft Matter 2, 631 (2006)
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[75]Surmounting barriers: The benefit of hydrodynamic interactions
C. Lutz, M. Reichert, H. Stark, C. Bechinger
Europhys. Lett. 74, 719 (2006)
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[74]From pair correlations to pair interactions: an exact relation in one-dimensional systems
H. Hansen-Goos, C. Lutz, C. Bechinger, R. Roth
Europhys. Lett. 74, 8 (2006)
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[73]Thermodynamics of a colloidal particle in a time-dependent non-harmonic potential
V.Blickle, T. Speck, L. Helden, U. Seifert, C. Bechinger
Phys. Rev. Lett. 96, 070603 (2006)
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[72]Strain-induced domain formation in two-dimensional colloidal systems
S. Bleil, H.H.v. Grünberg, J. Dobnikar, R. Castaneda-Priego, C. Bechinger
Europhys. Lett. 73, 450 (2006)
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[71]Quantifying stochastic resonance: Theory vs. Experiment
M. Evsitgneev, P. Reimann, C. Schmitt, C. Bechinger
J. Phys: Cond. Matt. 17, S3795 (2005)
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[70]Evanescent Light Scattering with Magnetic Colloids
V.Blickle, D. Babic, C. Bechinger
Appl. Phys. Lett. 87, 101102 (2005)
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[69]On the limits of video microscopy
J. Baumgartl, C. Bechinger
Europhys. Lett. 71, 487 (2005)
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[68]Noise enhanced performance of ratched cellular automata
D. Babic, C. Bechinger
Phys. Rev. Lett. 94, 148303 (2005)
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[67]Colloids as model systems for problems in statistical physics
D. Babic, C. Schmitt, C. Bechinger
Chaos 15, 026114 (2005)
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[66]Three-body forces at work:three-body potentials derived from triplet correlations in colloidal suspensions
C. Russ, M. Brunner, C. Bechinger, H.H.v. Grünberg
Europhys. Lett. 69, 468 (2005)
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[65]Wenn drei Körper mehr sind als drei Paare
C. Bechinger, H.H.v. Grünberg
Physik Journal November, 33 (2004)
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[64]Locked-floating-solid to locked-smectic transition in colloidal systems
J. Baumgartl, M. Brunner, C. Bechinger
Phys. Rev. Lett. 93, 168301 (2004)
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[63]Diffusion of colloids in one-dimensional light channels
C. Lutz, M. Kollmann, P. Leiderer, C. Bechinger
J. Phys: Cond. Matt. 16, S4075 (2004)
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[62]Single-file diffusion of colloids in one-dimensional channels
C. Lutz, M. Kollmann, C. Bechinger
Phys. Rev. Lett. 93, 026001 (2004)
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[61]Depletion potentials induced by charged colloidal rods
L. Helden, G.H. Koenderink, P. Leiderer, C. Bechinger
Langmuir 20, 5662 (2004)
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[60]Stochastic resonance in colloidal systems
D. Babic, C. Schmitt, I. Poberaj, C. Bechinger
Europhys. Lett. 67, 158 (2004)
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[59]Binary colloidal systems in two-dimensional circular cavities
K. Mangold, J. Birk, P. Leiderer, C. Bechinger
Phys. Chem. Chem. Phys. 6, 1623 (2004)
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[58]Three-body interactions in colloidal suspensions
J. Dobnikar, M. Brunner, H.H.v. Grünberg, C. Bechinger
Phys. Rev. E 69, 031402 (2004)
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[57]Direct measurement of three-body interactions amongst charged colloids
M. Brunner, J. Dobnikar, H.H.v. Grünberg, C. Bechinger
Phys. Rev. Lett. 92, 078301 (2004)
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[56]Colloidal systems in intense, two-dimensional laser fields
M. Brunner, C. Bechinger
Progr. Colloid. Polym. Sci 123, 156 (2004)
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[55]On the nature of long-range contributions to pair interactions between charged colloids in two dimensions
V. Lobaskin, M. Brunner, C. Bechinger, H.H.v. Grünberg
J. Phys: Cond. Matt. 15, 6693 (2003)
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[54]Subpattern formation during condensation processes on structured substrates
C. Schäfle, P. Leiderer, C. Bechinger
Europhys. Lett. 63, 394 (2003)
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[53]Measuring the equation of state of a hard-disc fluid
M. Brunner, C. Bechinger, U. Herz, H.H.v. Grünberg
Europhys. Lett. 63, 791 (2003)
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[52]Phase transitions of colloidal monolayers in periodic pinning arrays
K. Mangold, P. Leiderer, C. Bechinger
Phys. Rev. Lett. 90, 158302 (2003)
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[51]Direct measurement of entropic forces induced by rigid rods
L. Helden, R. Roth, G.H. Koenderink, P. Leiderer, C. Bechinger
Phys. Rev. Lett. 90, 48301 (2003)
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[50]Macroion shielding and state-dependent pair-potentials in colloidal suspensions
R. Klein, H.H.v. Grünberg, C. Bechinger, M. Brunner, V. Lobaskin
J. Phys: Cond. Matt. 14, 7631 (2002)
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[49]Fluctuation-induced order in two-dimensional colloidal clusters
R. Bubek, P. Leiderer, C. Bechinger
Europhys. Lett. 60, 474 (2002)
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[48]Phase behaviour of colloidal molecular crystals on triangular light-lattices
M. Brunner, C. Bechinger
Phys. Rev. Lett. 88, 248302 (2002)
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[47]Density-dependent pair-interactions in 2D colloidal suspensions
M. Brunner, C. Bechinger, W. Strepp, V. Lobaskin, H.H.v. Grünberg
Europhys. Lett. 58, 926 (2002)
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[46]Colloidal suspensions in confied geometries
C. Bechinger
Curr. Opinion Coll. Int. Sci. 7, 204 (2002)
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[45]Force exertion in fungal infection
M. Bastmeyer, H.B. Deising, C. Bechinger
Ann. Rev. Biophys. Biomol. Struct. 31, 321 (2002)
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[44]Perforated wetting layers from periodic pattern of lypophobic surface domains
P. Lenz, C. Bechinger, C. Schäfle, P. Leiderer, R. Lipowski
Langmuir 17, 7814 (2001)
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[43]Phase behaviour of colloids in confined geometry
C. Bechinger, E. Frey
J. Phys: Cond. Matt. 13, R321 (2001)
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[42]Measurement of surface charge densities on Brownian particles using total internal reflection microscopy
H.H.v. Grünberg, L. Helden, P. Leiderer, C. Bechinger
J. Chem. Phys. 114, 10094 (2001)
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[41]Substrate-induced phase transitions in 2D-colloidal systems
K. Mangold, R. Bubek, P. Leiderer, C. Bechinger
Progr. Colloid. Polym. Sci 118, 77 (2001)
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[40]Structure and synamics of two-dimensional colloidal crystals in circular cavities
R. Bubek, P. Leiderer, C. Bechinger
Progr. Colloid. Polym. Sci 118, 73 (2001)
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[39]Phase behaviour of two-dimensional colloidal systems in the presence of periodic light fields
C. Bechinger, M. Brunner, P. Leiderer
Phys. Rev. Lett. 86, 930 (2001)
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[38]Physik mit kolloidalen Suspensionen
C. Bechinger
Phys. Blätt. 56, 75 (2000)
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[37]Die Attraktivität von Unordnung
H.H.v. Grünberg, C. Bechinger
Spektrum d. Wissenschaft 6, 16 (2000)
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[36]Single-file-diffusion of colloids in one-dimensional channels
Q-H. Wei, C. Bechinger, P. Leiderer
Science 287, 625 (2000)
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[35]Submicron metal oxide structures by a sol-gel process on patterned subtrates
C. Bechinger, H. Muffler, C. Schäfle, O. Sundberg, P. Leiderer
Thin Solid Films 366, 135 (2000)
[34]Reentrant melting of two-dimensional colloidal systems
C. Bechinger, Q-H. Wei, P. Leiderer
J. Phys: Cond. Matt. 12, A425 (2000)
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[33]Understanding depletion forces beyond entropy
C. Bechinger, D. Rudhardt, P. Leiderer, R. Roth, S. Dietrich
Phys. Rev. Lett. 83, 3960 (1999)
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[32]Entropische Kräfte
C. Bechinger, H.H.v. Grünberg, P. Leiderer
Phys. Blätt. 55, 53 (1999)
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[31]Optical measurements of invasive forces exerted by appresoria of a plant pathogenic fungus
C. Bechinger, K.F. Giebel, M. Schnell, P. Leiderer, H.B. Deising, M. Bastmeyer
Science 285, 1896 (1999)
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[30]Repulsive depletion interactions in colloid-polymer mixtures
D. Rudhardt, C. Bechinger, P. Leiderer
J. Phys: Cond. Matt. 11, 10073 (1999)
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[29]Cooperative evaporation in ordered arrays of volatile droplets
C. Schäfle, C. Bechinger, B. Rinn, C. David, P. Leiderer
Phys. Rev. Lett. 83, 5302 (1999)
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[28]Melting and reentrant freezing of two-dimensional colloidal crystals in confined geometry
R. Bubek, C. Bechinger, S. Neser, P. Leiderer
Phys. Rev. Lett. 82, 3364 (1999)
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[27]Entropic interactions in mixtures of colloids and non-ionic polymers
D. Rudhardt, C. Bechinger, P. Leiderer
Progr. Colloid. Polym. Sci 112, 163 (1998)
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[26]Experimental observation of single-file diffusion of Brownian particles
Q-H. Wei, C. Bechinger, P. Leiderer
Progr. Colloid. Polym. Sci 112, 227 (1998)
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[25]Imaging of cell/substrate contacts of living cells with surface plasmon resonance microscopy
K.F. Giebel, C. Bechinger, S. Herminghaus, M. Riedel, P. Leiderer, U. Weiland, M. Bastmeyer
Biophys. J. 76, 509 (1998)
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[24]Lithography with colloid monolayers
F. Burmeister, C. Schäfle, B. Keilhofer, C. Bechinger, J. Boneberg, P. Leiderer
Chem. Eng. Technol. 21, 761 (1998)
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[23]Structure and synamics of two-dimensional colloidal crystals in confied geometry
R. Bubek, S. Neser, C. Bechinger, P. Leiderer
Progr. Colloid. Polym. Sci 110, 41 (1998)
[22]The interaction between colloidal particles and differently treated glass surfaces studied with evanescent wave scattering
D. Rudhardt, C. Bechinger, P. Leiderer
Progr. Colloid. Polym. Sci 110, 37 (1998)
[21]Structure of two-dimensional colloidal systems under the influence of an external modulated light field
Q-H. Wei, C. Bechinger, D. Rudhardt, P. Leiderer
Progr. Colloid. Polym. Sci 110, 46 (1998)
[20]Experimental study of laser induced melting in two dimensional colloids
Q-H. Wei, C. Bechinger, D. Rudhardt, P. Leiderer
Phys. Rev. Lett. 81, 2606 (1998)
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[19]Direct measurement of depletion potentials in mixtures of colloids and non-ionic polymers
D. Rudhardt, C. Bechinger, P. Leiderer
Phys. Rev. Lett. 81, 1330 (1998)
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[18]From mesoscopic to nanoscopic surface structures: Lithographie with colloid monolayers
F. Burmeister, C. Schäfle, B. Keilhofer, C. Bechinger, J. Boneberg, P. Leiderer
Adv. Mat. 10, 495 (1998)
[17]Surface plasmons as a resonance probe
C. Bechinger, J. Boneberg, S. Herminghaus, P. Leiderer
Proc. SPIE 3404, 365 (1997)
[16]Finite size effects on the closest packing of hard spheres
S. Neser, C. Bechinger, P. Leiderer, T. Palberg
Phys. Rev. Lett. 79, 2348 (1997)
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[15]Chromic mechanism in amorphous WO3 films
J-G. Zhang, D.K. Benson, C.E. Tracy, S.K. Deb, A.W. Czanderna, C. Bechinger
J. Electrochem. Soc. 144, 2022 (1997)
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[14]Reversible laser annealing on YBa2Cu3O7-d thin films
J. Eisenmenger, R. Steinke, C. Brand, S. Kambach, M. Hoffmann, C. Bechinger, P. Leiderer
Laser Physics 7, 349 (1997)
[13]Direct observation of a buckling transition during the formation of thin colloidal crystals
S. Neser, T. Palberg, C. Bechinger, P. Leiderer
Progr. Colloid. Polym. Sci 104, 194 (1997)
[12]Comparison between electrochromic and photochromic coloration efficiency of tungsten oxide thin films
C. Bechinger, M.S. Burdis, J-G. Zhang
Sol. State Comm. 101, 753 (1997)
[11]Photoelectrochromic windows and displays
C. Bechinger, S. Ferrere, A. Zaban, J. Sprague, B.A. Gregg
Nature p.23, Jan. 1997 (1996)
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[10]Development of a new self-powered electrochromic device for light modulation without external power supply
C. Bechinger, B.A. Gregg
Sol En. Mat. Sol. Cells 54, 405 (1996)
[9]Semi-transparent a-SIC:H solar cells for self-powered photovoltaic-electrochromic devices
J.N. Bullock, C. Bechinger, D.K. Benson, H.M. Branz
J. Non-Cryst. Solids 198, 1163 (1996)
[8]Photochromic coloration of WO3 with visible light
C. Bechinger, E. Wirth, P. Leiderer
Appl. Phys. Lett. 68, 2834 (1996)
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[7]Low-Voltage electrochromic device for photovoltaic-powered smart windows
C. Bechinger, J.N. Bullock, J-G. Zhang, C.E. Tracy, D.K. Benson, S.K. Deb, H.M. Branz
J. Appl. Phys. 80, 1226 (1996)
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[6]Dynamics of the Photochromic Effect of WO3
C. Bechinger, S. Herminghaus, W. Petersen, P. Leiderer
Proc. SPIE 2255, 467 (1994)
[5]Low frquency acoustic and dielectric measurments on glasses
J. Classen, C. Enss, C. Bechinger, G. Weiss, S. Hunklinger
Ann. Physik 3, 315 (1994)
[4]Phase contrast surface mode resonance microscopy
S. Herminghaus, C. Bechinger, W. Petersen, P. Leiderer
Opt. Comm. 112, 16 (1994)
[3]Photoinduced doping of thin amorphous WO3 films
C. Bechinger, S. Herminghaus, P. Leiderer
Thin Solid Films 239, 156 (1994)
[2]The dynamics of the photochromic effect in tungsten oxide
C. Bechinger, D. Ebner, S. Herminghaus, P. Leiderer
Solid State Comm. 89, 205 (1994)
[1]On the fundamental role of oxygen for the photchromic effect of WO3
C. Bechinger, G. Öfinger, S. Herminghaus, P. Leiderer
J. Appl. Phys. 74, 4527 (1993)
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