论文标题

电流的量子断层扫描

Quantum tomography of electrical currents

论文作者

Bisognin, R., Marguerite, A., Roussel, B., Kumar, M., Cabart, C., Chapdelaine, C., Mohammad-Djafari, A., Berroir, J. -M., Bocquillon, E., Plaçais, B., Cavanna, A., Gennser, U., Jin, Y., Degiovanni, P., Fève, G.

论文摘要

在量子纳米电子学中,时间依赖性的电流是由几乎没有定义明确的波形发射的基本激发构建的。但是,尽管实现了产生量化激发数量的来源,尽管在时间依赖性量子电子电子的理论框架中发展,但在理论水平和实验水平上,从电流中提取电子和孔波源仍然无法触及。在这项工作中,我们演示了一种量子断层扫描协议,该方案从任何电流中提取产生的电子和孔波形及其发射概率。它结合了两粒子干涉法与信号处理。使用我们的技术,我们提取由带有一两个电子的洛伦兹脉冲列车产生的波形。通过证明导体中电子波函数的合成和完整表征,这项工作为使用电流的量子信息处理提供了观点,并用于研究多体系统中的基本量子物理。

In quantum nanoelectronics, time-dependent electrical currents are built from few elementary excitations emitted with well-defined wavefunctions. However, despite the realization of sources generating quantized numbers of excitations, and despite the development of the theoretical framework of time-dependent quantum electronics, extracting electron and hole wavefunctions from electrical currents has so far remained out of reach, both at the theoretical and experimental levels. In this work, we demonstrate a quantum tomography protocol which extracts the generated electron and hole wavefunctions and their emission probabilities from any electrical current. It combines two-particle interferometry with signal processing. Using our technique, we extract the wavefunctions generated by trains of Lorentzian pulses carrying one or two electrons. By demonstrating the synthesis and complete characterization of electronic wavefunctions in conductors, this work offers perspectives for quantum information processing with electrical currents and for investigating basic quantum physics in many-body systems.

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