26 citations · 26 across the 1 of their papers we have counts for
7 papers
A coupled cluster framework for electrons and phonons
Alec F. White, Yang Gao, Austin J. Minnich +1
We describe a coupled cluster framework for coupled systems of electrons and phonons. Neutral and charged excitations are accessed via the equation-of-motion version of the theory.…
Quantum Computation of Finite-Temperature Static and Dynamical Properties of Spin Systems Using Quantum Imaginary Time Evolution
Shi-Ning Sun, Mario Motta, Ruslan N. Tazhigulov +3
Developing scalable quantum algorithms to study finite-temperature physics of quantum many-body systems has attracted considerable interest due to recent advancements in quantum ha…
Electronic noise of warm electrons in semiconductors from first-principles
Alexander Y. Choi, Peishi Cheng, Benjamin Hatanpaa +1
The ab-initio theory of low-field electronic transport properties such as carrier mobility in semiconductors is well-established. However, an equivalent treatment of electronic flu…
Electronic structure of bulk manganese oxide and nickel oxide from coupled cluster theory
Yang Gao, Qiming Sun, Jason M. Yu +5
We describe the ground- and excited-state electronic structure of bulk MnO and NiO, two prototypical correlated electron materials, using coupled cluster theory with single and dou…
Experimental demonstration of a generalized Fourier's Law for non-diffusive thermal transport
Chengyun Hua, Lucas Lindsay, Xiangwen Chen +1
Phonon heat conduction over length scales comparable to their mean free paths is a topic of considerable interest for basic science and thermal management technologies. Although th…
Determining eigenstates and thermal states on a quantum computer using quantum imaginary time evolution
Mario Motta, Chong Sun, Adrian Teck Keng Tan +5
The accurate computation of Hamiltonian ground, excited, and thermal states on quantum computers stands to impact many problems in the physical and computer sciences, from quantum…