228 citations · 247 across the 3 of their papers we have counts for
5 papers
An efficient quantum algorithm for generation of ab initio n-th order susceptibilities for non-linear spectroscopies
Tyler Kharazi, Torin F. Stetina, Liwen Ko +2
We develop and analyze a fault-tolerant quantum algorithm for computing -th order response properties necessary for analysis of non-linear spectroscopies of molecular and conden…
Capturing many-body correlation effects with quantum and classical computing
Karol Kowalski, Nicholas P. Bauman, Guang Hao Low +3
Theoretical descriptions of excited states of molecular systems in high-energy regimes are crucial for supporting and driving many experimental efforts at light source facilities.…
Towards quantum computing for high-energy excited states in molecular systems: quantum phase estimations of core-level states
Nicholas P. Bauman, Hongbin Liu, Eric J. Bylaska +9
This paper explores the utility of the quantum phase estimation (QPE) in calculating high-energy excited states characterized by promotions of electrons occupying inner energy shel…
Quantum imaging by coherent enhancement
Guang Hao Low, Theodore J. Yoder, Isaac L. Chuang
Conventional wisdom dictates that to image the position of fluorescent atoms or molecules, one should stimulate as much emission and collect as many photons as possible. That is, i…
Fixed-point quantum search with an optimal number of queries
Theodore J. Yoder, Guang Hao Low, Isaac L. Chuang
Grover's quantum search and its generalization, quantum amplitude amplification, provide quadratic advantage over classical algorithms for a diverse set of tasks, but are tricky to…