Two-mode squeezing and SU(1,1) interferometry with trapped ions

Fuente: arXiv
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Main Authors: Metzner, J., Quinn, A., Brudney, S., Moore, I. D., Burd, S. C., Wineland, D. J., Allcock, D. T. C
Format: Preprint
Published: 2023
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_version_ 1866914856856190976
author Metzner, J.
Quinn, A.
Brudney, S.
Moore, I. D.
Burd, S. C.
Wineland, D. J.
Allcock, D. T. C
author_facet Metzner, J.
Quinn, A.
Brudney, S.
Moore, I. D.
Burd, S. C.
Wineland, D. J.
Allcock, D. T. C
contents We experimentally implement circuits of one and two mode operations on two motional modes of a single trapped ion. This is achieved by implementing the required displacement, squeezing, two-mode squeezing, and beamsplitter operations using oscillating electric potentials applied to the trap electrodes. The resulting electric fields drive the modes resonantly or parametrically without the need for optical forces. As a demonstration, we implement SU(2) and SU(1,1) interferometers with phase sensitivities near the Cramér-Rao bound. We report a maximum sensitivity of a SU(2) interferometer within $0.67(5)\,$dB of the standard quantum limit (SQL) as well as a single and two-mode SU(1,1) sensitivity of $5.9(2)\,$dB and $4.5(2)\,$dB below the SQL respectively.
format Preprint
id arxiv_https___arxiv_org_abs_2312_10847
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Two-mode squeezing and SU(1,1) interferometry with trapped ions
Metzner, J.
Quinn, A.
Brudney, S.
Moore, I. D.
Burd, S. C.
Wineland, D. J.
Allcock, D. T. C
Quantum Physics
We experimentally implement circuits of one and two mode operations on two motional modes of a single trapped ion. This is achieved by implementing the required displacement, squeezing, two-mode squeezing, and beamsplitter operations using oscillating electric potentials applied to the trap electrodes. The resulting electric fields drive the modes resonantly or parametrically without the need for optical forces. As a demonstration, we implement SU(2) and SU(1,1) interferometers with phase sensitivities near the Cramér-Rao bound. We report a maximum sensitivity of a SU(2) interferometer within $0.67(5)\,$dB of the standard quantum limit (SQL) as well as a single and two-mode SU(1,1) sensitivity of $5.9(2)\,$dB and $4.5(2)\,$dB below the SQL respectively.
title Two-mode squeezing and SU(1,1) interferometry with trapped ions
topic Quantum Physics
url https://arxiv.org/abs/2312.10847