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5 papers

quant-ph2026

A Geometric Theory of Fermion-to-Qubit Encodings

Lakshya Nagpal, Nishith Reen, S. R. Hassan

The paper presents a geometric framework based on weighted hypergraphs to represent fermion-to-qubit encodings (Bravyi–Kitaev and Xia–Bian–Kais), revealing how these geometries cap…

quant-ph2026

Worldline-Susceptibility Scheduling for Quantum Annealing Beyond Local-Adiabatic Evolution

Suraj Singh, Lakshya Nagpal, Vikas Chauhan +1

The paper introduces a low‑cost scheduling method for quantum annealing that uses worldline magnetization susceptibility measured via equilibrium Monte Carlo sampling, and shows it…

quant-ph2025

Adaptive Quantum Matter: Variational Organization through Ising Agents

Lakshya Nagpal, Syed. R. Hassan

The study introduces the Adaptive Quantum Ising Agents (AQIA) framework, a Hamiltonian-based methodology that extends programmable quantum matter into an adaptive domain. Each agen…

quant-ph2025

Beating the standard quantum limit with single-photon-added coherent states

Pankaj K. Jha, Lakshya Nagpal, Amir Targholizadeh +2

The standard quantum limit (SQL), also known as the shot-noise limit, defines how quantum fluctuations of light constrain measurement precision. In a benchmark experiment using the…

cond-mat.str-el2025

Mapping of Fermionic Lattice Models for Ising Solvers

Lakshya Nagpal, Aditya Kumar, S. R. Hassan

We present an end-to-end, symmetry-aware pipeline that converts interacting fermionic and quantum-spin models into annealer-ready QUBOs while preserving low-energy physics. The wor…