activity
20242026
collaborators

5 papers

quant-ph2026

Quantum resource redistribution drives spectral splits in dense neutrino gases

Michael Hite, Pooja Siwach

Whether a quantum many-body system can be efficiently simulated hinges not only on its size but also on how quantum resources are organized within it. We characterize the quantum r…

hep-ph2026

Three-flavor supernova neutrino simulation using a hybrid quantum-classical algorithm with qutrits

Daniel J. Heimsoth, A. Baha Balantekin, Pooja Siwach

We simulate a self-interacting three-flavor neutrino system within a core-collapse supernova using a hybrid classical-quantum algorithm on a qutrit computer. Based on the Dirac-Fre…

quant-ph2025

Advancing quantum simulations of nuclear shell model with noise-resilient protocols

Nifeeya Singh, Pooja Siwach, P. Arumugam

Some of the computational limitations in solving the nuclear many-body problem could be overcome by utilizing quantum computers. The nuclear shell-model calculations providing deep…

quant-ph2025

Quantum simulations of nuclear resonances with variational methods

Ashutosh Singh, Pooja Siwach, P. Arumugam

The many-body nature of nuclear physics problems poses significant computational challenges. These challenges become even more pronounced when studying the resonance states of nucl…

hep-th2024

Exploring entanglement and spectral split correlations in three-flavor collective neutrino oscillations

Pooja Siwach, A. Baha Balantekin, Amol V. Patwardhan +1

In environments with prodigious numbers of neutrinos, such as core-collapse supernovae, neutron star mergers, or the early universe, neutrino-neutrino interactions are dynamically…