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Original Articles

Growing length scales in a supercooled liquid close to an interface

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Pages 283-290 | Published online: 04 Aug 2009

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Shreyas Gokhale, A.K. Sood & Rajesh Ganapathy. (2016) Deconstructing the glass transition through critical experiments on colloids. Advances in Physics 65:4, pages 363-452.
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Articles from other publishers (32)

Jean-Louis Barrat & Ludovic Berthier. (2023) Computer simulations of the glass transition and glassy materials. Comptes Rendus. Physique 24:S1, pages 1-16.
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Ludovic Berthier & David R. Reichman. (2023) Modern computational studies of the glass transition. Nature Reviews Physics 5:2, pages 102-116.
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Francesco Arceri, François P. Landes, Ludovic Berthier & Giulio Biroli. 2022. Statistical and Nonlinear Physics. Statistical and Nonlinear Physics 229 296 .
Francesco Arceri, François P. Landes, Ludovic Berthier & Giulio Biroli. 2020. Encyclopedia of Complexity and Systems Science. Encyclopedia of Complexity and Systems Science 1 68 .
Matteo Paoluzzi, Luca Angelani, Giorgio Parisi & Giancarlo Ruocco. (2019) Relation between Heterogeneous Frozen Regions in Supercooled Liquids and Non-Debye Spectrum in the Corresponding Glasses. Physical Review Letters 123:15.
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S. P. Niblett, V. K. de Souza, R. L. Jack & D. J. Wales. (2018) Effects of random pinning on the potential energy landscape of a supercooled liquid. The Journal of Chemical Physics 149:11.
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Haonan Wang, Jyo Lyn Hor, Yue Zhang, Tianyi Liu, Daeyeon Lee & Zahra Fakhraai. (2018) Dramatic Increase in Polymer Glass Transition Temperature under Extreme Nanoconfinement in Weakly Interacting Nanoparticle Films. ACS Nano 12:6, pages 5580-5587.
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Mahdis Hesami, Werner Steffen, Hans-Juergen Butt, George Floudas & Kaloian Koynov. (2018) Molecular Probe Diffusion in Thin Polymer Films: Evidence for a Layer with Enhanced Mobility Far above the Glass Temperature. ACS Macro Letters 7:4, pages 425-430.
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M. Tylinski, M. S. Beasley, Y. Z. Chua, C. Schick & M. D. Ediger. (2017) Limited surface mobility inhibits stable glass formation for 2-ethyl-1-hexanol. The Journal of Chemical Physics 146:20.
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M. Solar, K. Binder & W. Paul. (2017) Relaxation processes and glass transition of confined polymer melts: A molecular dynamics simulation of 1,4-polybutadiene between graphite walls. The Journal of Chemical Physics 146:20.
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Baicheng Mei, Yuyuan Lu, Lijia An, Hongfei Li & Liang Wang. (2017) Nonmonotonic dynamic correlations in quasi-two-dimensional confined glass-forming liquids. Physical Review E 95:5.
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Junko Habasaki, Carlos Leon & K.L. NgaiJunko Habasaki, Carlos León & K. L. Ngai. 2017. Dynamics of Glassy, Crystalline and Liquid Ionic Conductors. Dynamics of Glassy, Crystalline and Liquid Ionic Conductors 89 250 .
Yuxing Zhou & Scott T. Milner. (2016) Static lengths in glass-forming monodisperse hard-sphere fluids from periodic array pinning. Soft Matter 12:2, pages 402-407.
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Vo Van Hoang, Dao Kim Thoa, Takashi Odagaki & Le Ngoc Qui. (2015) Substrate effects on glass formation in simple monatomic supercooled liquids. Chemical Physics 447, pages 1-9.
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Vincent Krakoviack. (2014) Simple physics of the partly pinned fluid systems. The Journal of Chemical Physics 141:10.
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Gary L. Hunter, Kazem V. Edmond & Eric R. Weeks. (2014) Boundary Mobility Controls Glassiness in Confined Colloidal Liquids. Physical Review Letters 112:21.
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M. D. Ediger & J. A. Forrest. (2013) Dynamics near Free Surfaces and the Glass Transition in Thin Polymer Films: A View to the Future. Macromolecules 47:2, pages 471-478.
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Ratul Dasgupta, Pankaj Mishra, Itamar Procaccia & Konrad Samwer. (2013) Micro-alloying and the toughness of glasses: Modeling with pinned particles. Applied Physics Letters 102:19.
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Chiara Cammarota & Giulio Biroli. (2013) Random pinning glass transition: Hallmarks, mean-field theory and renormalization group analysis. The Journal of Chemical Physics 138:12.
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Giacomo Gradenigo, Roberto Trozzo, Andrea Cavagna, Tomás S. Grigera & Paolo Verrocchio. (2013) Static correlations functions and domain walls in glass-forming liquids: The case of a sandwich geometry. The Journal of Chemical Physics 138:12.
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Chiara Cammarota. (2013) A general approach to systems with randomly pinned particles: Unfolding and clarifying the Random Pinning Glass Transition. EPL (Europhysics Letters) 101:5, pages 56001.
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Chiara Cammarota & Giulio Biroli. (2012) Ideal glass transitions by random pinning. Proceedings of the National Academy of Sciences 109:23, pages 8850-8855.
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K.L. NgaiK.L. Ngai. 2011. Relaxation and Diffusion in Complex Systems. Relaxation and Diffusion in Complex Systems 639 764 .
K.L. NgaiK.L. Ngai. 2011. Relaxation and Diffusion in Complex Systems. Relaxation and Diffusion in Complex Systems 49 638 .
Kai H. Hassdenteufel, Artem R. Oganov, Sergiy Katrych & Walter Steurer. (2007) Ab initio study of : An approximant of the decagonal quasicrystal . Physical Review B 75:14.
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K.L. Ngai. (2006) Interpreting the dynamics of nano-confined glass-formers and thin polymer films: Importance of starting from a viable theory for the bulk. Journal of Polymer Science Part B: Polymer Physics 44:20, pages 2980-2995.
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K.L. Ngai, T.R. Gopalakrishnan & M. Beiner. (2006) Relaxation in poly(alkyl methacrylate)s: Change of intermolecular coupling with molecular structure, tacticity, molecular weight, copolymerization, crosslinking, and nanoconfinement. Polymer 47:20, pages 7222-7230.
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Y. Hiwatari & J. Habasaki. (2005) Dynamical significance in alkali metasilicate glasses. Journal of Molecular Liquids 120:1-3, pages 135-138.
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Peter Scheidler, Walter Kob & Kurt Binder. (2004) The Relaxation Dynamics of a Supercooled Liquid Confined by Rough Walls. The Journal of Physical Chemistry B 108:21, pages 6673-6686.
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N. Lačević, F. W. Starr, T. B. Schrøder & S. C. Glotzer. (2003) Spatially heterogeneous dynamics investigated via a time-dependent four-point density correlation function. The Journal of Chemical Physics 119:14, pages 7372-7387.
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XiaoHua Qiu and & M. D. Ediger. (2002) Length Scale of Dynamic Heterogeneity in Supercooled d -Sorbitol:  Comparison to Model Predictions . The Journal of Physical Chemistry B 107:2, pages 459-464.
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P. Scheidler, W. Kob & K. Binder. 2003. Computer Simulations of Surfaces and Interfaces. Computer Simulations of Surfaces and Interfaces 297 312 .

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