论文标题
量子测量诱导多体转换
Quantum measurement induces a many-body transition
论文作者
论文摘要
量子技术的当前革命依赖于分离,连贯控制和测量量子系统状态的能力。然而,随着测量机构与观察到的系统纠缠在一起,量子力学中的测量行为自然具有侵入性。即使对于理想的探测器,测量结果也始终导致观察到的系统中的干扰,这是一种称为量子测量背光的现象。在这里,我们报告了由于量子测量结果,测量系统的多体性能发生了深刻的变化。我们观察到这种背部诱导的介质双量子点中的反向诱导的过渡,在那里我们使用电荷传感器点通过测量来切换电子种群。我们的发现展示了由于量子技术无处不在的量子探测器而引起的行为的重要变化。
The current revolution in quantum technologies relies on the ability to isolate, coherently control, and measure the state of quantum systems. The act of measurement in quantum mechanics, however, is naturally invasive as the measurement apparatus becomes entangled with the system that it observes. Even for ideal detectors, the measurement outcome always leads to a disturbance in the observed system, a phenomenon called quantum measurement backaction. Here we report a profound change in the many-body properties of the measured system due to quantum measurements. We observe this backaction-induced transition in a mesoscopic double quantum-dot in the Coulomb-blockade regime, where we switch the electron population through measurement with a charge sensor dot. Our finding showcases the important changes in behaviour that can arise due to quantum detectors, which are ubiquitous in quantum technologies.