activity
20242026
collaborators
Showing quant-phShow all

6 papers · 1 filter

quant-ph2026

Distribution Complexity of Electronic Structure Simulations on Quantum Supercomputers

Jason Necaise, Namit Anand, Gaurav Gyawali +3

Efficient simulation of strongly-interacting fermionic systems on quantum processing units (QPUs) is a challenging task due to nonlocal mode entanglement generation. However, it is…

quant-ph2026

Putting fermions onto a digital quantum computer

Riley W. Chien, Mitchell L. Chiew, Brent Harrison +8

Quantum computers are expected to become a powerful tool for studying physical quantum systems. Consequently, a number of quantum algorithms for studying the physical properties of…

quant-ph2025

QB Ground State Energy Estimation Benchmark

Nicole Bellonzi, Joshua T. Cantin, Mohammad Reza Jangrouei +14

Ground State Energy Estimation (GSEE) is a central problem in quantum chemistry and condensed matter physics, demanding efficient algorithms to solve complex electronic structure c…

quant-ph2025

Gaussianity and Simulability of Cliffords and Matchgates

Andrew M. Projansky, Jason Necaise, James D. Whitfield

Though Cliffords and matchgates are both examples of classically simulable circuits, they are considered simulable for different reasons. The celebrated Gottesman-Knill explains th…

quant-ph2024

A Sierpinski Triangle Fermion-to-Qubit Transform

Brent Harrison, Mitchell Chiew, Jason Necaise +3

In order to simulate a system of fermions on a quantum computer, it is necessary to represent the fermionic states and operators on qubits. This can be accomplished in multiple way…

quant-ph2024

Prospects for Quantum Computation in Propellant Design: Assessing the Stability of Cyclic Ozone in Nanoscale Confinement

Thomas W. Watts, Matthew Otten, Jason T. Necaise +14

Cyclic ozone additives have the potential to markedly increase the specific impulse of rocket fuel. This would translate to greater efficiency and reduced costs for space lift by g…