collaborators

5 papers

quant-ph2025

Complexity transitions in chaotic quantum systems: Nonstabilizerness, entanglement, and fractal dimension in SYK and random matrix models

Gopal Chandra Santra, Alex Windey, Soumik Bandyopadhyay +2

Complex quantum systems -- composed of many, interacting particles -- are intrinsically difficult to model. When a quantum many-body system is subject to disorder, it can undergo t…

quant-ph2025

Quantum Resources in Non-Abelian Lattice Gauge Theories: Nonstabilizerness, Multipartite Entanglement, and Fermionic Non-Gaussianity

Gopal Chandra Santra, Julius Mildenberger, Edoardo Ballini +3

Lattice gauge theories (LGTs) represent one of the most ambitious goals of quantum simulation. From a practical implementation perspective, non-Abelian theories present significant…

quant-ph2025

Role of Nonstabilizerness in Quantum Optimization

Chiara Capecci, Gopal Chandra Santra, Alberto Bottarelli +2

Quantum optimization has emerged as a promising approach for tackling complicated classical optimization problems using quantum devices. However, the extent to which such algorithm…

quant-ph2025

Genuine Multipartite Entanglement in Quantum Optimization

Gopal Chandra Santra, Sudipto Singha Roy, Daniel J. Egger +1

The ability to generate bipartite entanglement in quantum computing technologies is widely regarded as pivotal. However, the role of genuinely multipartite entanglement is much les…

quant-ph2024

Disorder-averaged Qudit Dynamics

Gopal Chandra Santra, Philipp Hauke

Understanding how physical systems are influenced by disorder is a fundamental challenge in quantum science. Addressing its effects often involves numerical averaging over a large…