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Chun-Yaung Lu

Showing results (1-10 of 11) with videos related to

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The Journal of Physical Chemistry Letters|August 22, 2015
Role of Geometric Relaxation in Oxygen Binding to Metal NanoparticlesChun-Yaung Lu, Graeme Henkelman
The Journal of Chemical Physics|October 4, 2006
Effect of finite trajectory length on the correlation function analysis of single molecule dataChun-Yaung Lu, David A Vanden Bout
The Journal of Chemical Physics|July 8, 2008
Analysis of orientational dynamics of single fluorophore trajectories from three-angle polarization experimentsChun-Yaung Lu, David A Vanden Bout
The Journal of Chemical Physics|July 3, 2016
Accelerating ring-polymer molecular dynamics with parallel-replica dynamicsChun-Yaung Lu, Danny Perez, Arthur F Voter
The Journal of Chemical Physics|February 12, 2015
Extending atomistic simulation timescale in solid/liquid systems: crystal growth from solution by a parallel-replica dynamics and continuum hybrid methodChun-Yaung Lu, Arthur F Voter, Danny Perez
The Journal of Chemical Physics|December 8, 2010
Communication: κ-dynamics--an exact method for accelerating rare event classical molecular dynamicsChun-Yaung Lu, Dmitrii E Makarov, Graeme Henkelman
The Journal of Physical Chemistry. A|December 29, 2020
Moving Boundary Truncated Grid Method: Application to the Time Evolution of Distribution Functions in Phase SpaceTsung-Yen Lee, Chun-Yaung Lu, Chia-Chun Chou
Physical Review. E|August 1, 2025
Application of the moving boundary truncated grid method to semiconductor device simulations in the framework of the Boltzmann-Bhatnagar-Gross-Krook equationMing-Yu Li, Chun-Yaung Lu, Chia-Chun Chou
The Journal of Chemical Physics|February 2, 2022
Moving boundary truncated grid method for electronic nonadiabatic dynamicsChun-Yaung Lu, Tsung-Yen Lee, Chia-Chun Chou
Journal of Fluorescence|August 19, 2007
Determining if a system is heterogeneous: the analysis of single molecule rotational correlation functions and their limitationsChia-Yin Joyce Wei, Chun-Yaung Lu, Yeon Ho Kim, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
The Journal of Physical Chemistry Letters|August 22, 2015
Role of Geometric Relaxation in Oxygen Binding to Metal NanoparticlesChun-Yaung Lu, Graeme Henkelman
The Journal of Chemical Physics|October 4, 2006
Effect of finite trajectory length on the correlation function analysis of single molecule dataChun-Yaung Lu, David A Vanden Bout
The Journal of Chemical Physics|July 8, 2008
Analysis of orientational dynamics of single fluorophore trajectories from three-angle polarization experimentsChun-Yaung Lu, David A Vanden Bout
The Journal of Chemical Physics|July 3, 2016
Accelerating ring-polymer molecular dynamics with parallel-replica dynamicsChun-Yaung Lu, Danny Perez, Arthur F Voter
The Journal of Chemical Physics|February 12, 2015
Extending atomistic simulation timescale in solid/liquid systems: crystal growth from solution by a parallel-replica dynamics and continuum hybrid methodChun-Yaung Lu, Arthur F Voter, Danny Perez
The Journal of Chemical Physics|December 8, 2010
Communication: κ-dynamics--an exact method for accelerating rare event classical molecular dynamicsChun-Yaung Lu, Dmitrii E Makarov, Graeme Henkelman
The Journal of Physical Chemistry. A|December 29, 2020
Moving Boundary Truncated Grid Method: Application to the Time Evolution of Distribution Functions in Phase SpaceTsung-Yen Lee, Chun-Yaung Lu, Chia-Chun Chou
Physical Review. E|August 1, 2025
Application of the moving boundary truncated grid method to semiconductor device simulations in the framework of the Boltzmann-Bhatnagar-Gross-Krook equationMing-Yu Li, Chun-Yaung Lu, Chia-Chun Chou
The Journal of Chemical Physics|February 2, 2022
Moving boundary truncated grid method for electronic nonadiabatic dynamicsChun-Yaung Lu, Tsung-Yen Lee, Chia-Chun Chou
Journal of Fluorescence|August 19, 2007
Determining if a system is heterogeneous: the analysis of single molecule rotational correlation functions and their limitationsChia-Yin Joyce Wei, Chun-Yaung Lu, Yeon Ho Kim, et al.
Pageof 2