论文标题

古典和量子光:量子基础和量子信息的多功能工具

Classical and Quantum Light: Versatile tools for quantum foundations and quantum information

论文作者

Silva, Thais de Lima

论文摘要

光束提供了许多自由度,可以在离散和连续的域中探索。除了在许多自由度中纠缠光子的可能性外,它还使光成为量子信息和量子基础目的的非常有用和通用的工具。在本论文中,我们通过提出新的贡献来认可其重要性和多功能性,从而进一步探索离散和连续的自由度。它始于两个使用经典光的实验,并探索其与量子系统的类似行为。第一个是对相对论量子粒子动力学的经典光学模拟。第二项工作与有效离散但由连续变量系统构建的相互无偏测量的理论有关。在论文的第二部分中,提出了三项使用极化和离散自由度的作品。第一个是基于上一个定义的不一致的量子非局部相关的重新定义,称为转向,即在上一个定义中的不一致,即使用据说无法做到的操作从scratch创建此相关性。我们称这种量子转向的曝光。用纠缠的光子观察到转向暴露。其他两项作品与量子量子的量子通道的实验实现有关,其中之一是我们使用称为条件过去未来(CPF)相关性的操作措施来测试非马克维亚性的特定通道。论文结束了一个建议,以实现单个量子位的任何量子通道的实验实现,其中量子通过单个光子的极化实现。所有使用的光学设备的功能都是丹学解释的。

Light beams offer many degrees of freedom to be explored in discrete and continuous domains. In addition to the possibility of entangling photons in these many degrees of freedom, it makes light a very useful and versatile tool for quantum information and quantum foundation purposes. In this thesis, we endorse its importance and versatility by presenting novel contributions that further explore both discrete and continuous degrees of freedom. It begins with two experiments that use classical light and explore its analogous behavior to quantum systems. The first one is a classical optics simulation of the dynamics of a relativistic quantum particle. The second work is related to the theory of mutually unbiased measurements that are effectively discrete but constructed from continuous variables systems. In the second part of the thesis, three works are presented that use the polarization and path discrete degrees of freedom. The first one is a redefinition of the quantum nonlocal correlation called steering in the multipartite scenario, based on an inconsistency in the previous definition, namely the creation of this correlation from scratch using operations that supposedly would not be able to do so. We call this exposure of quantum steering. Steering exposure is observed with entangled photons. The other two works are related to the experimental implementation of quantum channels of qubits, one of them is a particular channel for which we test for non-Markovianity using a operational measure called conditional past-future (CPF) correlation. The thesis finishes with a proposal for an experimental realization of any quantum channel of a single qubit, where the qubit is realized by the polarization of single photons. The functioning of all optical devices used is didactically explained.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源