Multidimensional spectroscopy
 | Developing the basic theories of higher-order off-resonant Raman
spectroscopies. |
 | Analysis of inhomogeneity, anharmonisity, nonlinear polarizability by 2D
spectroscopies |
 | Mode coupling mechanism of molecules in condensed phase |
 | 2D spectroscopy of Brownian model with frequency modulation |
Representative references
 | Y. Tanimura and S. Mukamel, Two-dimensional femtosecond
vibrational spectroscopy of liquids, J. Chem. Phys. 99,
9496-9511 (1993). |
 | T. Hasegawa and Y. Tanimura, Calculating fifth-order Raman
signals for various molecular liquids by equilibrium and nonequilibrium
hybrid MD simulation algorism,
J. Chem. Phys.
125, 074512 (2006). |
 | T. Hasegawa and Y. Tanimura, Nonequilibrium molecular dynamics
simulations with a backward-forward trajectories sampling for
multidimensional infrared spectroscopy,
J. Chem. Phys.
128, 064511 (2008). |
 | A. Sakurai and Y. Tanimura, Does hbar play a role in
multidimensional spectroscopy? Reduced hierarchy equations of motion
approach to molecular vibrations,
J. Phys. Chem. A 115, 4009-4022 (2011)
Error correction)
|
 | T. Hasegawa and Y. Tanimura, A polarizable water model for intramolecular and intermolecular vibrational
spectroscopies, J. Phys. Chem.
B 115, 5545-5553 (2011). |
 |
H. Ito, T. Hasegawa, and Y. Tanimura, Calculating
two-dimensional THz-Raman-THz and Raman-THz-THz signals for various molecular liquids: The samplers,
J. Chem. Phys.
141, 124503 [11 pages] (2014).
(PDF)
[Open Access] |
 | T. Ikeda, H. Ito, and Y. Tanimura, Analysis of 2D THz-Raman spectroscopy using a non-Markovian Brownian oscillator
model with nonlinear system-bath interactions,
J. Chem. Phys. 142,
212421 [15 pages] (2015). |
 | H. Ito, J. Jo, and Y. Tanimura, Notes on
simulating 2D Raman and THz-Raman signals with a full molecular dynamics
simulation approach,
Struct. Dyn.
2, 054102
[21 pages] (2015). |
 |
H. Takahashi and Y. Tanimura, Simulating two-dimensional correlation
spectroscopies with third-order infrared and fifth-order infrared-Raman
processes of liquid water, J. Chem. Phys.
158,
124108 (2023)
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