Ranko Richert



Switch to:  Topic select

Switch to:  Full list


List of Publications : Models/Theory


Numbers link to PDF's
Titles link to DOI's

291.
 
From Single-Particle to Collective Dynamics in Supercooled Liquids
D. V. Matyushov, R. Richert, J. Phys. Chem. Lett. 14 (2023) 4886 - 4891
SUP
 
278.
 
Quantifying Dielectric Permittivities in the Nonlinear Regime
R. Richert, D. V. Matyushov, J. Phys.: Condens. Matter 33 (2021) 385101.1 - 385101.7
253.
 
Fundamental Link between β Relaxation, Excess Wing, and Cage-Breaking in Metallic Glasses
H.-B. Yu, M.-H. Yang, Y. Sun, F. Zhang, J.-B. Liu, C. Z. Wang, K. M. Ho, R. Richert, K. Samwer, J. Phys. Chem. Lett. 9 (2018) 5877 - 5883
246.
 
Structural Rearrangements Governing Johari-Goldstein Relaxations in Metallic Glasses
H.-B. Yu, R. Richert, K. Samwer, Sci. Adv. 3 (2017) e1701577.1 - e1701577.6
SUP
 
241.
 
Correlation Between Viscoelastic Moduli and Atomic Rearrangements in Metallic Glasses
H.-B. Yu, R. Richert, K. Samwer, J. Phys. Chem. Lett. 7 (2016) 3747 - 3751
SUP
 
239.
 
Dynamics of Glass-Forming Liquids. XX. Third Harmonic Experiments of Non-Linear Dielectric Effects Versus a Phenomenological Model
P. Kim, A. R. Young-Gonzales, R. Richert, J. Chem. Phys. 145 (2016) 064510.1 - 064510.8
236.
 
Nonlinear Dielectric Signatures of Entropy Changes in Liquids Subject to Time-Dependent Electric Fields
R. Richert, J. Chem. Phys. 144 (2016) 114501.1 - 114501.5
235.
 
Temperature Derivative of the Dielectric Constant Gives Access to Multipoint Correlations in Polar Liquids
D. V. Matyushov, R. Richert, J. Chem. Phys. 144 (2016) 041102.1 - 041102.4
SUP
 
230.
 
Strain Induced Fragility Transition in Metallic Glass
H.-B. Yu, R. Richert, R. Maaß, K. Samwer, Nat. Commun. 6 (2015) 7179.1 - 7179.6
214.
 
Frequency Dependence of Dielectric Saturation
R. Richert, Phys. Rev. E 88 (2013) 062313.1 - 062313.6
200.
 
Enthalpy Recovery in Glassy Materials: Heterogeneous versus Homogenous Models
S. K. S. Mazinani, R. Richert, J. Chem. Phys. 136 (2012) 174515.1 - 174515.8
199.
 
Erratum: "Heat Capacity in the Glass Transition Range Modeled on the Basis of Heterogeneous Dynamics" [J. Chem. Phys. 134, 144501 (2011)]
R. Richert, J. Chem. Phys. 136 (2012) 169901.1
192.
 
Heat Capacity in the Glass Transition Range Modeled on the Basis of Heterogeneous Dynamics
R. Richert, J. Chem. Phys. 134 (2011) 144501.1 - 144501.7
185.
 
Reverse Calorimetry of a Supercooled Liquid: Propylene Carbonate
R. Richert, Thermochim. Acta 522 (2011) 28 - 35
182.
 
Dielectric Spectroscopy and Dynamics in Confinement
R. Richert, Eur. Phys. J. Special Topics 189 (2010) 37 - 46
174.
 
Physical Aging and Heterogeneous Dynamics
R. Richert, Phys. Rev. Lett. 104 (2010) 085702.1 - 085702.4
168.
 
Dynamics of Glass-Forming Liquids. XIII. Microwave Heating in Slow Motion
W. Huang, R. Richert, J. Chem. Phys. 130 (2009) 194509.1 - 194509.14
167.
 
Insulated Electrodes for Eliminating Conductivity in Dielectric Relaxation Experiments
R. Richert, Eur. Phys. J. B 68 (2009) 197 - 200
166.
 
On the Harmonic Analysis of Non-Linear Dielectric Effects
W. Huang, R. Richert, Eur. Phys. J. B 66 (2008) 217 - 221
165.
 
Prevalence of Approximate √t Relaxation for the Dielectric α Process in Viscous Organic Liquids
A. I. Nielsen, T. Christensen, B. Jakobsen, K. Niss, N. B. Olsen, R. Richert, J. C. Dyre, J. Chem. Phys. 130 (2009) 154508.1 - 154508.15
163.
 
Heat Capacity and Entropy at the Glass Transition
R. Richert, AIP Conf. Proc. 1027 (2008) 1297 - 1299
160.
 
Why Retardation Takes More Time Than Relaxation in a Linear System
J. Jäckle, R. Richert, Phys. Rev. E 77 (2008) 031201.1 - 031201.6
142.
 
Fragility and Thermodynamics in Non-Polymeric Glass-Forming Liquids
L.-M. Wang, C. A. Angell, R. Richert, J. Chem. Phys. 125 (2006) 074505.1 - 074505.8
135.
 
Heterogeneous Thermal Excitation and Relaxation in Supercooled Liquids
S. Weinstein, R. Richert, J. Chem. Phys. 123 (2005) 224506.1 - 224506.9
131.
 
Effect of Dispersion on the Relaxation-Retardation Time Scale Ratio
N. Ito, R. Richert, J. Chem. Phys. 123 (2005) 106101.1 - 106101.2
115.
 
Dielectric Hole Burning: Signature of Dielectric and Thermal Relaxation Time Heterogeneity
K. R. Jeffrey, R. Richert, K. Duvvuri, J. Chem. Phys. 119 (2003) 6150 - 6156
110.
 
Dielectric Hole Burning in an Electrical Circuit Analog of a Dynamically Heterogeneous System
R. Richert, Physica A 322 (2003) 143 - 154
101.
 
Spectral Diffusion in Liquids with Fluctuating Solvent Responses: Dynamical Heterogeneity and Rate Exchange
R. Richert, J. Chem. Phys. 115 (2001) 1429 - 1434
100.
 
Theory of Time Dependent Optical Linewidths in Supercooled Liquids
R. Richert, J. Chem. Phys. 114 (2001) 7471 - 7476
81.
 
Dynamic Heterogeneity, Spatially Distributed Stretched-Exponential Patterns, and Transient Dispersions in Solvation Dynamics
R. Richert, M. Richert, Phys. Rev. E 58 (1998) 779 - 784
78.
 
Molecular Dynamics Analysed in terms of Continuous Measures of Dynamic Heterogeneity
R. Richert, J. Non-Cryst. Solids 235-237 (1998) 41 - 47
71.
 
Dynamic Heterogeneity by Higher Moments of a Relaxing Quantity
R. Richert, Mater. Res. Soc. Symp. Proc. 455 (1997) 127 - 132
70.
 
Evidence for Dynamic Heterogeneity near Tg from the Time Resolved Inhomogeneous Broadening of Optical Line Shapes (LETTER)
R. Richert, J. Phys. Chem. B 101 (1997) 6323 - 6326
67.
 
Dielectric Loss Spectra of Organic Glass Formers and Chamberlin Cluster Model
C. Hansen, R. Richert, E. W. Fischer, J. Non-Cryst. Solids 215 (1997) 293 - 300
64.
 
Rate-Memory and Dynamic Heterogeneity of First-Order Reactions in a Polymer Matrix
R. Richert, A. Heuer, Macromol. 30 (1997) 4038 - 4041
63.
 
Thermally Stimulated Modulus Relaxation in Polymers: Method and Interpretation
H. Wagner, R. Richert, Polymer 38 (1997) 5801 - 5806
58.
 
Solvation Energy of Ions and Dipoles in a Finite Number of Solvent Shells
R. Richert, J. Phys.: Condens. Matter 8 (1996) 6185 - 6190
54.
 
Analysis of the Energy Landscape for Charge Transport in Polar Glassy Materials
R. Richert, R. F. Loring, J. Phys. Chem. 99 (1995) 17265 - 17268
48.
 
Polarization Response of a Dielectric Continuum to a Motion of Charge
R. Richert, H. Wagner, J. Phys. Chem. 99 (1995) 10948 - 10951
40.
 
Dispersive First-Order Reactions I: Data Analysis
H. Schäfer, U. Albrecht, R. Richert, Chem. Phys. 182 (1994) 53 - 59
37.
 
Homogeneous Dispersion of Dielectric Responses in a Simple Glass
R. Richert, J. Non-Cryst. Solids 172-174 (1994) 209 - 213
36.
 
Disordered Systems and Relaxation
R. Richert, A. Blumen, in 'Disorder Effects on Relaxational Processes', R. Richert, A. Blumen (Eds.), Springer, Berlin, 1994, pp. 1 - 7
35.
 
Origin of Dispersion in Dipolar Relaxations of Glasses
R. Richert, Chem. Phys. Lett. 216 (1993) 223 - 227
25.
 
Anomalous Time-Independent Diffusion of Charge Carriers in a Random Potential under a Bias Field
L. Pautmeier, R. Richert, H. Bässler, Philos. Mag. B 63 (1991) 587 - 601
23.
 
Simulation of Excitation Transport in Disordered Media
R. Richert, L. Pautmeier, H. Bässler, in 'Large-Scale Molecular Systems: Quantum and Stochastic Aspects - Beyond the Simple Molecular Picture', W. Gans, A. Blumen, A. Amann (Eds.), Plenum Press, New York, 1991, pp. 471 - 476
20.
 
Poole-Frenkel Behavior of Charge Transport in Organic Solids with Off-Diagonal Disorder Studied by Monte Carlo Simulation
L. Pautmeier, R. Richert, H. Bässler, Synth. Met. 37 (1990) 271 -281
18.
 
Hopping in a Gaussian Distribution of Energy States: Transition from Dispersive to Non-Dispersive Transport
L. Pautmeier, R. Richert, H. Bässler, Philos. Mag. Lett. 59 (1989) 325 - 331
17.
 
Dynamics of Supercooled Melts Treated in Terms of the Random Walk Concept
R. Richert, H. Bässler, J. Phys.: Condens. Matter 2 (1990) 2273 - 2288
16.
 
Diffusion and Drift of Charge Carriers in a Random Potential: Deviation from Einstein's Law
R. Richert, L. Pautmeier, H. Bässler, Phys. Rev. Lett. 63 (1989) 547 - 550
14.
 
Dynamics of a Polymer Matrix Probed by the Ring-Closure of Merocyanine
R. Richert, Chem. Phys. 122 (1988) 455 - 462
10.
 
Interpretation of Dispersive Hole-Burning Kinetics
R. Richert, J. Chem. Phys. 86 (1987) 1743 - 1747
4.
 
Analysis of Non-Exponential First-Order Reactions
R. Richert, Chem. Phys. Lett. 118 (1985) 534 - 538