论文标题
在激烈的激光互动中产生光学schrödinger猫状态
Generation of optical Schrödinger cat states in intense laser-matter interactions
论文作者
论文摘要
通过经典处理光脉冲来描述强烈激光 - 物质相互作用的物理学,预计无需访问超出经典限制的光学测量。但是,始终存在电磁场的量子性质。在这里,我们证明强烈的激光原子相互作用可能导致高度非古典光态的产生。这是通过使用原子中高谐波产生的过程来实现的,在该过程中,红外频率的驱动激光脉冲的光子在极端紫外线光谱范围内将较高频率的光子上升到较高频率的光子中。相互作用后基本模式的量子状态是在高谐波生成的情况下,是一种所谓的schrödinger猫状态,对应于两个不同的相干状态的叠加:激光的初始状态和相干状态降低了与原子相互作用的幅度降低。结果为控制非古典状态的调查开辟了道路,利用与高谐波产生相关的物理过程的调节方法。
The physics of intense laser-matter interactions is described by treating the light pulses classically, anticipating no need to access optical measurements beyond the classical limit. However, the quantum nature of the electromagnetic fields is always present. Here, we demonstrate that intense laser-atom interactions may lead to the generation of highly non-classical light states. This was achieved by using the process of high-harmonic generation in atoms, in which the photons of a driving laser pulse of infrared frequency are up-converted into photons of higher frequencies in the extreme ultraviolet spectral range. The quantum state of the fundamental mode after the interaction, when conditioned on the high-harmonic generation, is a so-called Schrödinger cat state, which corresponds to a superposition of two distinct coherent states: the initial state of the laser and the coherent state reduced in amplitude that results from the interaction with atoms. The results open the path for investigations towards the control of the non-classical states, exploiting conditioning approaches on physical processes relevant to high-harmonic generation.