Qiu T H
Opt Express. 2015 Sep 21;23(19):24537-46. doi: 10.1364/OE.23.024537.
We propose two schemes of holographic imaging with an object that has no any macro structure itself. The tunable electromagnetically induced grating (EIG) is such a kind of object. We obtain an EIG based on the periodically modulated strong susceptibility in a three-level ladder-type hybrid artificial molecule, which is comprised of a semiconductor quantum dot and a metal nanoparticle coupled via the Coulomb interaction. The holographic interference pattern is detected either directly in the way of classical holographic imaging with a coherent field being the imaging light, or indirectly and nonlocally in the way of two-photon coincidence measurement with a pair of entangled photons playing the role of imaging light. This work provides a practical prototype of electromagnetically induced transparency-based holographic solid-state devices for all-optical classical and quantum information processing.
我们提出了两种针对本身没有任何宏观结构的物体的全息成像方案。可调谐电磁诱导光栅(EIG)就是这样一种物体。我们基于三能级阶梯型混合人工分子中周期性调制的强磁化率获得了一种EIG,该分子由通过库仑相互作用耦合的半导体量子点和金属纳米颗粒组成。全息干涉图案既可以直接通过以相干场作为成像光的经典全息成像方式进行检测,也可以间接且非局域地通过以一对纠缠光子作为成像光的双光子符合测量方式进行检测。这项工作为用于全光经典和量子信息处理的基于电磁诱导透明的全息固态器件提供了一个实用原型。