most citedThe Optical Signatures of Stochastic Processes in Many-Body Exciton Scattering

11 citations · 21 across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph2024★ 1 cited

Requirements for probing chiral Casimir-Polder forces in a molecular Talbot-Lau interferometer

Fumika Suzuki, S. A. Shah, Diego A. R. Dalvit +1

We theoretically investigate the influence of chiral Casimir-Polder (CP) forces in Talbot-Lau interferometry, based on three nanomechanical gratings. We study scenarios where the s…

quant-ph2022★ 6 cited

QuDPy: A Python-Based Tool For Computing Ultrafast Non-linear Optical Responses

S. A. Shah, Hao Li, Eric R. Bittner +2

Nonlinear Optical Spectroscopy is a well-developed field with theoretical and experimental advances that have aided multiple fields including chemistry, biology and physics. Howeve…

cond-mat.mtrl-sci2022★ 11 cited

The Optical Signatures of Stochastic Processes in Many-Body Exciton Scattering

Hao Li, S. A. Shah, Ajay Ram Srimath Kandada +3

We review our recent quantum stochastic model for spectroscopic lineshapes in the presence of a co-evolving and non-stationary background population of excitations. Starting from a…

cond-mat.mes-hall2022★ 3 cited

Stochastic exciton-scattering theory of optical lineshapes: Renormalized many-body contributions

Hao Li, S. A. Shah, Eric R. Bittner +2

Spectral line-shapes provide a window into the local environment coupled to a quantum transition in the condensed phase. In this paper, we build upon a stochastic model to account…

nlin.PS2022

Correlating exciton coherence length, localization, and its optical lineshape. I. a finite temperature solution of the Davydov soliton model

Eric R. Bittner, Carlos Silva, S. A. Shah +1

The lineshape of spectroscopic transitions offer windows into the local environment of a system. Here, we present a novel approach for connecting the lineshape of a molecular excit…