B Sriram Shastry

Affiliations: 
Physics University of California, Santa Cruz, Santa Cruz, CA, United States 
Area:
Condensed Matter Physics, Theory Physics
Website:
http://physics.ucsc.edu/~sriram/sriram.html
Google:
"B Sriram Shastry"
Bio:

http://physics.ucsc.edu/~sriram/CV_Brief.pdf

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Publications

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Perepelitsky E, Shastry BS. (2019) Band-Edge Quasiparticles from Electron-Phonon Coupling and Resistivity Saturation. Physical Review Letters. 122: 026602
Žitko R, Krishnamurthy HR, Shastry BS. (2018) Reversal of particle-hole scattering-rate asymmetry in the Anderson impurity model Physical Review B. 98
Shastry BS, Mai P. (2018) Extremely correlated Fermi liquid theory of thet-Jmodel in 2 dimensions: low energy properties New Journal of Physics. 20: 013027
Matsuyama K, Perepelitsky E, Shastry BS. (2017) Origin of kinks in the energy dispersion of strongly correlated matter Physical Review B. 95
Perepelitsky E, Galatas A, Mravlje J, et al. (2016) Transport and optical conductivity in the Hubbard model: A high-temperature expansion perspective Physical Review B. 94
Shastry BS, Perepelitsky E. (2016) Low-energy physics of the t-J model in d= using extremely correlated Fermi liquid theory: Cutoff second-order equations Physical Review B - Condensed Matter and Materials Physics. 94
Khatami E, Perepelitsky E, Rigol M, et al. (2014) Linked-cluster expansion for the Green's function of the infinite-U Hubbard model. Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics. 89: 063301
Shastry BS. (2014) Theory of extreme correlations using canonical Fermions and path integrals Annals of Physics. 343: 164-199
Žitko R, Hansen D, Perepelitsky E, et al. (2013) Extremely correlated Fermi liquid theory meets dynamical mean-field theory: Analytical insights into the doping-driven Mott transition Physical Review B - Condensed Matter and Materials Physics. 88
Shastry BS, Perepelitsky E, Hewson AC. (2013) Extremely correlated Fermi liquid study of the U=∞ Anderson impurity model Physical Review B - Condensed Matter and Materials Physics. 88
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