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The Journal of Chemical Physics|July 26, 2013
Second-order many-body perturbation expansions of vibrational Dyson self-energiesMatthew R Hermes, So HirataThe Journal of Physical Chemistry. A|April 13, 2013
First-order Dyson coordinates and geometryMatthew R Hermes, So HirataThe Journal of Chemical Physics|September 15, 2011
Hybrid coupled-cluster and perturbation method for extended systems of one-dimensional periodicityYu-ya Ohnishi, So HirataThe Journal of Chemical Physics|July 24, 2010
First-principles theories for anharmonic lattice vibrationsSo Hirata, Murat Keçeli, Kiyoshi YagiThe Journal of Chemical Physics|July 24, 2010
First-principles calculations on anharmonic vibrational frequencies of polyethylene and polyacetylene in the Gamma approximationMurat Keçeli, So Hirata, Kiyoshi YagiThe Journal of Chemical Physics|January 21, 2014
Finite-temperature second-order many-body perturbation and Hartree-Fock theories for one-dimensional solids: an application to Peierls and charge-density-wave transitions in conjugated polymersXiao He, Shinsei Ryu, So HirataThe Journal of Chemical Physics|July 28, 2007
Efficient configuration selection scheme for vibrational second-order perturbation theoryKiyoshi Yagi, So Hirata, Kimihiko HiraoPhysical Chemistry Chemical Physics : PCCP|March 20, 2008
Vibrational quasi-degenerate perturbation theory: applications to fermi resonance in CO2, H2CO, and C6H6Kiyoshi Yagi, So Hirata, Kimihiko HiraoThe Journal of Chemical Physics|December 5, 2012
Optimized coordinates for anharmonic vibrational structure theoriesKiyoshi Yagi, Murat Keçeli, So HirataThe Journal of Chemical Physics|July 7, 2007
Second- and third-order triples and quadruples corrections to coupled-cluster singles and doubles in the ground and excited statesToru Shiozaki, Kimihiko Hirao, So HirataPageof 12