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Research PaperResearchia:202608.17071

Analytical Theory of Higher-Order Collective Spin Interactions in Cavity Quantum Electrodynamics

Leilani Ainsworth

Abstract

Cavity-mediated collective-spin interactions are commonly described by a quadratic one-axis twisting Hamiltonian. However, the underlying atom-light interaction naturally generates nonlinearities to arbitrary order. Here, we derive a closed-form analytical expression for the complete hierarchy of cavity-mediated collective-spin interactions. We show that the nonlinear coefficients $χ_k$ are governed by Chebyshev polynomials, with $k$ the order of nonlinearity. This yields a universal scaling $χ_...

Submitted: August 17, 2026Subjects: Quantum Physics; Quantum Computing

Description / Details

Cavity-mediated collective-spin interactions are commonly described by a quadratic one-axis twisting Hamiltonian. However, the underlying atom-light interaction naturally generates nonlinearities to arbitrary order. Here, we derive a closed-form analytical expression for the complete hierarchy of cavity-mediated collective-spin interactions. We show that the nonlinear coefficients χkχ_k are governed by Chebyshev polynomials, with kk the order of nonlinearity. This yields a universal scaling χkηkχ_k\proptoη^k with the single-atom cooperativity ηη and a description of their dependence on cavity detuning. The result provides a systematic framework for determining when higher-order nonlinearities become relevant and when the quadratic approximation breaks down. We identify experimentally relevant regimes in which higher-order terms substantially modify collective-spin dynamics, accelerating the generation of quantum correlations and quantum Fisher information, and demonstrate that finite-order expansions can accurately reproduce the full cavity-mediated evolution. Our results establish a general framework for understanding higher-order nonlinearities in cavity quantum electrodynamics and their role in collective entanglement and quantum-enhanced sensing.


Source: arXiv:2608.14343v1 - http://arxiv.org/abs/2608.14343v1 PDF: https://arxiv.org/pdf/2608.14343v1 Original Link: http://arxiv.org/abs/2608.14343v1

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Date:
Aug 17, 2026
Topic:
Quantum Computing
Area:
Quantum Physics
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Analytical Theory of Higher-Order Collective Spin Interactions in Cavity Quantum Electrodynamics | Researchia