collaborators

6 papers

cond-mat.mes-hall2026

Nanoscale imaging of ferromagnetic vortex dynamics with scanning NV magnetometry

Jeffrey Rable, Jyotirmay Dwivedi, Nitin Samarth +3

The generation and manipulation of spin waves at the nanoscale via magnetic vortices are of considerable importance because of their broad applications across magnonic and quantum…

quant-ph2026

Fault-tolerant quantum algorithms for simulating atomic nuclei

James Benstead, Michael Garn, Neil Gaspar +5

To maximize the value of fault-tolerant quantum computers, it is essential to develop concrete applications beyond well-established domains such as chemistry and condensed-matter p…

nucl-th2026

Qubit-efficient variational algorithm for nuclear structure

Chandan Sarma, Paul Stevenson

In this work, we compare three qubit-mapping strategies to study the structure of the nuclear ground state within the shell model description employing the Variational Quantum Eige…

quant-ph2026

Low -count preparation of nuclear eigenstates with tensor networks

Joe Gibbs, Lukasz Cincio, Chandan Sarma +2

We present an efficient protocol leveraging classical computation to support Initial State Preparation for strongly correlated fermionic systems, a critical bottleneck for fault-to…

cond-mat.str-el2025

Signatures of Non-Abelian Kitaev quantum spin liquids in noise magnetormetry

Xiao Xiao, Masahiro O. Takahashi, Paul Stevenson +2

Identification of isolated Majorana zero modes (MZMs) is a key step towards the realization of fault-tolerant topological quantum computation. Here we show how the -based nois…

cond-mat.mes-hall2025

Flux channeling induced nano-confinement and enhancement of microwaves imaged by Rabi oscillation mapping

Jeffrey Rable, Jyotirmay Dwivedi, Nitin Samarth +3

With rapid advances in qubit technologies, techniques for localizing, modulating, and measuring RF fields and their impact on qubit performance are of the utmost importance. Here,…