论文标题

高效的相位可调光子热二极管

Highly efficient phase-tunable photonic thermal diode

论文作者

Marchegiani, G., Braggio, A., Giazotto, F.

论文摘要

我们研究了超导电极和正常金属之间的光子介导的热传输。当可以忽略准粒子的贡献时,光子介导的通道成为低温下超导体的有效热传输弛豫过程,它比电子 - phonon相互作用引起的固有贡献大。此外,超导体正常金属系统充当了几乎完美的热二极管,对于现实的铝制超导岛来说,其重新构二二$ $ 10^8 $。还可以通过非高谷耦合来以相处的方式调整整流因子,该耦合通过更改磁通量刺穿超导量子量子干扰装置(squid)来实现,从而改变了超导体和正常金属之间的耦合阻碍。可以通过将热量转移到正常的金属垫中,以更有效或为了更一般的热管理目的,可以利用该方案在超导量子电路中被动冷却。

We investigate the photon-mediated thermal transport between a superconducting electrode and a normal metal. When the quasiparticle contribution can be neglected, the photon-mediated channel becomes an efficient heat transport relaxation process for the superconductor at low temperatures, being larger than the intrinsic contribution due to the electron-phonon interaction. Furthermore, the superconductor-normal metal system acts as a nearly-perfect thermal diode, with a rectification factor up to $10^8$ for a realistic aluminum superconducting island. The rectification factor can be also tuned in a phase-controlled fashion through a non-galvanic coupling, realized by changing the magnetic flux piercing a superconducting quantum interference device (SQUID), which modifies the coupling impedance between the superconductor and the normal metal. The scheme can be exploited for passive cooling in superconducting quantum circuits by transferring heat toward normal metallic pads where it dissipates more efficiently or for more general thermal management purposes.

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