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超导芯片上黑洞对霍金辐射和弯曲时空中的量子模拟。

Quantum simulation of Hawking radiation and curved spacetime with a superconducting on-chip black hole.

机构信息

Institute of Physics, Chinese Academy of Sciences, 100190, Beijing, China.

School of Physical Sciences, University of Chinese Academy of Sciences, 100049, Beijing, China.

出版信息

Nat Commun. 2023 Jun 5;14(1):3263. doi: 10.1038/s41467-023-39064-6.

Abstract

Hawking radiation is one of the quantum features of a black hole that can be understood as a quantum tunneling across the event horizon of the black hole, but it is quite difficult to directly observe the Hawking radiation of an astrophysical black hole. Here, we report a fermionic lattice-model-type realization of an analogue black hole by using a chain of 10 superconducting transmon qubits with interactions mediated by 9 transmon-type tunable couplers. The quantum walks of quasi-particle in the curved spacetime reflect the gravitational effect near the black hole, resulting in the behaviour of stimulated Hawking radiation, which is verified by the state tomography measurement of all 7 qubits outside the horizon. In addition, the dynamics of entanglement in the curved spacetime is directly measured. Our results would stimulate more interests to explore the related features of black holes using the programmable superconducting processor with tunable couplers.

摘要

霍金辐射是黑洞的量子特征之一,可以理解为黑洞事件视界的量子隧穿,但要直接观察天体物理黑洞的霍金辐射相当困难。在这里,我们通过使用由 9 个可调谐超导转导耦合器介导的 10 个超导跃迁量子比特链,报告了一个模拟黑洞的费米子晶格模型类型的实现。准粒子在弯曲时空中的量子漫步反映了黑洞附近的引力效应,导致受激霍金辐射的行为,这通过视界外的所有 7 个量子比特的状态层析成像测量得到了验证。此外,还直接测量了弯曲时空中的纠缠动力学。我们的结果将激发更多兴趣,使用具有可调谐耦合器的可编程超导处理器来探索黑洞的相关特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bffa/10241825/e34f667ea598/41467_2023_39064_Fig1_HTML.jpg

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