Synthetic Z 2 gauge theories based on parametric excitations of trapped ions
Resource efficient schemes for the quantum simulation of lattice gauge theories can benefit from hybrid encodings of gauge and matter fields that use the native degrees of freedom, such as internal qubits and motional phonons in trapped-ion devices. We propose to use a parametric scheme to induce a...
Egile Nagusiak: | Bǎzǎvan, O, Saner, S, Tirrito, E, Araneda, G, Srinivas, R, Bermudez, A |
---|---|
Formatua: | Journal article |
Hizkuntza: | English |
Argitaratua: |
Nature Research
2024
|
Antzeko izenburuak
-
Synthetic $${{\mathbb{Z}}}_{2}$$ Z 2 gauge theories based on parametric excitations of trapped ions
nork: Oana Bǎzǎvan, et al.
Argitaratua: (2024-07-01) -
Synthesizing a Sigma circumflex accent z spin-dependent force for optical, metastable, and ground-state trapped-ion qubits
nork: Bazavan, O, et al.
Argitaratua: (2023) -
Breaking the entangling gate speed limit for trapped-ion qubits using a phase-stable standing wave
nork: Saner, S, et al.
Argitaratua: (2023) -
Preparing pure $$^{43}$$ 43 Ca $$^+$$ + samples in an ion trap with photoionization and parametric excitations
nork: C.-H. Kuo, et al.
Argitaratua: (2024-08-01) -
Towards analog quantum simulations of lattice gauge theories with trapped ions
nork: Zohreh Davoudi, et al.
Argitaratua: (2020-04-01)