Speeding up squeezing with a periodically driven Dicke model Journal Article uri icon

Overview

abstract

  • We present a simple and effective method to create highly entangled spin states on a faster timescale than that of the commonly employed one-axis twisting (OAT) model. We demonstrate that by periodically driving the Dicke Hamiltonian at a resonance frequency, the system effectively becomes a two-axis countertwisting Hamiltonian, which is known to quickly create Heisenberg limit scaled entangled states. For these states we show that simple quadrature measurements can saturate the ultimate precision limit for parameter estimation determined by the quantum Cramér-Rao bound. An example experimental realization of the periodically driven scheme is discussed with the potential to quickly generate momentum entanglement in a recently described experimental vertical cavity system. We analyze effects of collective dissipation in this vertical cavity system and find that our squeezing protocol can be more robust than the previous realization of OAT.; ; ; ; ; Published by the American Physical Society; 2024; ; ;

publication date

  • July 22, 2024

has restriction

  • gold

Date in CU Experts

  • July 24, 2024 5:03 AM

Full Author List

  • Reilly JT; Jäger SB; Wilson JD; Cooper J; Eggert S; Holland MJ

author count

  • 6

Other Profiles

Electronic International Standard Serial Number (EISSN)

  • 2643-1564

Additional Document Info

volume

  • 6

issue

  • 3

number

  • 033090