论文标题

超导量子计算机的基本限制

Fundamental limits of superconducting quantum computers

论文作者

Vischi, Michele, Ferialdi, Luca, Trombettoni, Andrea, Bassi, Angelo

论文摘要

连续的自发定位(CSL)模型是量子力学的替代公式,它引入了非线性耦合到波函数以解释其崩溃的噪声。我们认为CSL对由超导式旋转矩形制成的量子计算机的影响。作为直接效应,CSL减少了量子位的计算基础状态的量子叠加:我们表明的降低速率可忽略不计。然而,通过噪声引起的耗散的CSL的间接效应也会导致Transmon Qubits通过产生其他准颗粒来破坏。由于Transmon Qubits的分解速率取决于准颗粒密度,因此通过计算CSL诱导的产生速率,我们可以估计相应的准粒子密度,因此CSL对TransMon量子计算机的性能设置了极限。我们表明,CSL可能会破坏大型设备上实用算法的量子计算。我们进一步探讨了测试CSL对超导设备的影响的可能性。

The Continuous Spontaneous Localization (CSL) model is an alternative formulation of quantum mechanics which introduces a noise coupled non linearly to the wave function to account for its collapse. We consider CSL effects on quantum computers made of superconducting transmon qubits. As a direct effect CSL reduces quantum superpositions of the computational basis states of the qubits: we show the reduction rate to be negligibly small. However, an indirect effect of CSL, dissipation induced by the noise, also leads transmon qubits to decohere, by generating additional quasiparticles. Since the decoherence rate of transmon qubits depends on the quasiparticle density, by computing their generation rate induced by CSL, we can estimate the corresponding quasiparticle density and thus the limit set by CSL on the performances of transmon quantum computers. We show that CSL could spoil the quantum computation of practical algorithms on large devices. We further explore the possibility of testing CSL effects on superconducting devices.

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