Speeding Up Squeezing with a Periodically Driven Dicke Model
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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. |
Year of Publication |
2023
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Date Published |
2024-07
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Journal Title |
Physical Review Research
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Volume |
6
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Start Page or Article ID |
033090
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