activity
20212023
most citedA Multisite Decomposition of the Tensor Network Path Integrals

55 citations · 94 across the 5 of their papers we have counts for

collaborators

5 papers

physics.chem-ph2023★ 7 cited

Impact of Spatial Inhomogeneity on Excitation Energy Transport in the Fenna-Matthews-Olson Complex

Amartya Bose, Peter L. Walters

The dynamics of the excitation energy transfer (EET) in photosynthetic complexes is an interesting question both from the perspective of fundamental understanding and the research…

physics.chem-ph2023★ 7 cited

Impact of solvent on state-to-state population transport in multistate systems using coherences

Amartya Bose, Peter L. Walters

Understanding the pathways taken by a quantum particle during a transport process is an enormous challenge. There are broadly two different aspects of the problem that affect the r…

physics.chem-ph2022

Effect of Temperature Gradient on Quantum Transport

Amartya Bose, Peter L. Walters

The recently introduced multisite tensor network path integral (MS-TNPI) method [Bose and Walters, J. Chem. Phys., 2022, 156, 24101.] for simulation of quantum dynamics of extended…

physics.chem-ph2022★ 25 cited

Tensor Network Path Integral Study of Dynamics in B850 LH2 Ring with Atomistically Derived Vibrations

Amartya Bose, Peter L. Walters

The recently introduced multisite tensor network path integral (MS-TNPI) allows simulation of extended quantum systems coupled to dissipative media. We use MS-TNPI to simulate the…

quant-ph2021★ 55 cited

A Multisite Decomposition of the Tensor Network Path Integrals

Amartya Bose, Peter L. Walters

Tensor network decompositions of path integrals for simulating open quantum systems have recently been proven to be useful. However, these methods scale exponentially with the syst…