Vladimir A. Mandelshtam
Affiliations: | Chemistry - Ph.D. | University of California, Irvine, Irvine, CA |
Area:
Physical Chemistry, Theory Physics, Quantum PhysicsWebsite:
https://www.chem.uci.edu/people/vladimir-mandelshtamGoogle:
"Vladimir Mandelshtam"Bio:
https://www.faculty.uci.edu/profile.cfm?faculty_id=4582
Mean distance: (not calculated yet)
Children
Sign in to add traineeJianhan Chen | grad student | 2002 | UC Irvine |
Geoffrey S. Armstrong | grad student | 2003 | UC Irvine |
Jason Deckman | grad student | 2011 | UC Irvine |
Beau R. Martini | grad student | 2014 | UC Irvine |
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Publications
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Kohno BH, Mandelshtam VA. (2020) The loss of size sensitivity in para-hydrogen clusters due to the strong quantum delocalization. The Journal of Physical Chemistry. A |
Flynn SW, Mandelshtam VA. (2019) Sampling general distributions with quasi-regular grids: Application to the vibrational spectra calculations. The Journal of Chemical Physics. 151: 241105 |
Kohno BH, Mallory JD, Mandelshtam VA. (2019) Magic numbers, quantum delocalization, and orientational disordering in anionic hydrogen and deuterium clusters. The Journal of Chemical Physics. 150: 204305 |
Mallory JD, Mandelshtam VA. (2018) Quantum-induced solid-solid transitions and melting in the Lennard-Jones LJ cluster. The Journal of Chemical Physics. 149: 104305 |
Mallory JD, Mandelshtam VA. (2018) Nuclear Quantum Effects and Thermodynamic Properties for Small (HO)X Clusters (X = F, Cl, Br, I). The Journal of Physical Chemistry. A |
Mallory JD, Mandelshtam VA. (2017) Quantum melting and isotope effects from diffusion Monte Carlo studies of p-H2 clusters. Quantum Melting and Isotope Effects From Diffusion Monte Carlo Studies of p-H2 Clusters. The Journal of Physical Chemistry. A |
Brown SE, Götz AW, Cheng X, et al. (2017) Monitoring Water Clusters "Melt" Through Vibrational Spectroscopy. Journal of the American Chemical Society |
Mallory JD, Mandelshtam VA. (2016) Diffusion Monte Carlo studies of MB-pol (H |
Brown SE, Mandelshtam VA. (2016) Self-consistent phonons: An accurate and practical method to account for anharmonic effects in equilibrium properties of general classical or quantum many-body systems Chemical Physics. 481: 69-76 |
Mandelshtam VA. (2016) Comment on “Benchmarking compressed sensing, super-resolution, and filter diagonalization” (Int. J. Quantum Chem. 2016, 116, 1097) International Journal of Quantum Chemistry. 116: 1814-1817 |