Hybrid qubit-oscillator module with motional states of two trapped interacting atoms

Fuente: arXiv
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Autori principali: Hwang, Jaeyong, Xu, Tianrui, Muleady, Sean R., Pampel, Steven, Lubin, Gur, Hewatt, Dawson, Regal, Cindy A., Rey, Ana Maria
Natura: Preprint
Pubblicazione: 2025
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author Hwang, Jaeyong
Xu, Tianrui
Muleady, Sean R.
Pampel, Steven
Lubin, Gur
Hewatt, Dawson
Regal, Cindy A.
Rey, Ana Maria
author_facet Hwang, Jaeyong
Xu, Tianrui
Muleady, Sean R.
Pampel, Steven
Lubin, Gur
Hewatt, Dawson
Regal, Cindy A.
Rey, Ana Maria
contents We propose the use of motional states of two interacting atoms trapped in a potential stroboscopically engineered by an optical tweezer as a means to implement a qubit-oscillator system, in analogy to those implemented in circuit quantum electrodynamics and trapped ions. In our setting, the center of mass degree of freedom of the atoms plays the role of a photon or phonon mode, while the interacting, relative mode acts as a qubit. No internal state is involved in our system, which makes this motional qubit robust to spin-dependent noise. We show that a universal set of bosonic operations, including displacement, rotation, squeezing, and the corresponding set of gates controlled by the qubit, can be implemented through precise temporal modulation of the optical tweezers. We numerically check that these gates can be generated with high fidelity, and discuss possible schemes for initial state preparation and final state readout. While we restrict the discussion to a single qubit-oscillator module, scalability can be achieved by coupling arrays of atoms via dipolar or Rydberg-dressed interactions.
format Preprint
id arxiv_https___arxiv_org_abs_2512_06429
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hybrid qubit-oscillator module with motional states of two trapped interacting atoms
Hwang, Jaeyong
Xu, Tianrui
Muleady, Sean R.
Pampel, Steven
Lubin, Gur
Hewatt, Dawson
Regal, Cindy A.
Rey, Ana Maria
Quantum Physics
Atomic Physics
We propose the use of motional states of two interacting atoms trapped in a potential stroboscopically engineered by an optical tweezer as a means to implement a qubit-oscillator system, in analogy to those implemented in circuit quantum electrodynamics and trapped ions. In our setting, the center of mass degree of freedom of the atoms plays the role of a photon or phonon mode, while the interacting, relative mode acts as a qubit. No internal state is involved in our system, which makes this motional qubit robust to spin-dependent noise. We show that a universal set of bosonic operations, including displacement, rotation, squeezing, and the corresponding set of gates controlled by the qubit, can be implemented through precise temporal modulation of the optical tweezers. We numerically check that these gates can be generated with high fidelity, and discuss possible schemes for initial state preparation and final state readout. While we restrict the discussion to a single qubit-oscillator module, scalability can be achieved by coupling arrays of atoms via dipolar or Rydberg-dressed interactions.
title Hybrid qubit-oscillator module with motional states of two trapped interacting atoms
topic Quantum Physics
Atomic Physics
url https://arxiv.org/abs/2512.06429