Mohammad Hassan

ORCID: 0000-0003-2042-0857
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About
Contact & Profiles
Research Areas
  • Quantum Computing Algorithms and Architecture
  • Quantum Information and Cryptography
  • Quantum and electron transport phenomena
  • Quantum many-body systems
  • Quantum chaos and dynamical systems
  • Strong Light-Matter Interactions
  • Cosmology and Gravitation Theories
  • Surface and Thin Film Phenomena
  • Galaxies: Formation, Evolution, Phenomena
  • Dark Matter and Cosmic Phenomena
  • stochastic dynamics and bifurcation
  • Semiconductor materials and devices
  • Black Holes and Theoretical Physics
  • Cold Atom Physics and Bose-Einstein Condensates
  • Parallel Computing and Optimization Techniques
  • Quantum Mechanics and Non-Hermitian Physics
  • Neural Networks and Reservoir Computing

City College of New York
2022-2024

City University of New York
2024

The Graduate Center, CUNY
2024

Arizona State University
2000

Matrix quantum mechanics plays various important roles in theoretical physics, such as a holographic description of black holes. Understanding holes and the role entanglement setup is paramount importance for development better algorithms (quantum error correction codes) realization theory gravity. Quantum computing deep learning offer us potentially useful approaches to study dynamics matrix mechanics. In this paper we perform systematic survey mechanics, comparing them Lattice Monte Carlo...

10.1103/prxquantum.3.010324 article EN cc-by PRX Quantum 2022-02-10

The recent advent of quantum algorithms for noisy devices offers a new route toward simulating strong light–matter interactions molecules in optical cavities polaritonic chemistry. In this work, we introduce general framework electron–photon-coupled systems on small, devices. This method is based the variational eigensolver (VQE) with unitary coupled cluster (PUCC) ansatz. To achieve chemical accuracy, exploit various symmetries qubit reduction methods, such as electron–photon parity, and...

10.1021/acs.jpclett.3c02875 article EN The Journal of Physical Chemistry Letters 2024-01-29

The recent advent of quantum algorithms for noisy devices offers a new route toward simulating strong light-matter interactions molecules in optical cavities polaritonic chemistry. In this work, we introduce general framework electron-photon coupled systems on small, devices. This method is based the variational eigensolver (VQE) with unitary cluster (PUCC) ansatz. To achieve chemical accuracy, exploit various symmetries qubit reduction methods, such as parity, and use recently developed...

10.48550/arxiv.2310.02100 preprint EN other-oa arXiv (Cornell University) 2023-01-01

Cosmology is in an era of rapid discovery especially areas related to dark energy, matter and inflation. Quantum cosmology treats the quantum mechanically important when effects need be accounted for, very early Universe. computing emerging new method which excels simulating systems. may have some advantages cosmology, because Euclidean action gravity unbounded from below, making implementation Monte Carlo simulation problematic. In this paper we present several examples application...

10.48550/arxiv.2105.13849 preprint EN other-oa arXiv (Cornell University) 2021-01-01
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