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A Generic Simulation Framework for Non-Entangled based Experimental Quantum Cryptography and Communication: Quantum Cryptography and Communication Simulator (QuCCs)

机译:基于非纠缠的实验量子密码和通信的通用模拟框架:量子密码和通信模拟器(QUCC)

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摘要

The applications of quantum information science move towards bigger and better heights for the next generation technology. Especially, in the field of quantum cryptography and quantum computation, the world already witnessed various ground-breaking tangible product and promising results. Quantum cryptography is one of the mature field from quantum mechanics and already available in the markets. The current state of quantum cryptography is still under various researches in order to reach the heights of digital cryptography. The complexity of quantum cryptography is higher due to combination of hardware and software. The lack of effective simulation tool to design and analyze the quantum cryptography experiments delays the reaching distance of the success. In this paper, we propose a framework to achieve an effective non-entanglement based quantum cryptography simulation tool. We applied hybrid simulation technique i.e. discrete event, continuous event and system dynamics. We also highlight the limitations of a commercial photonic simulation tool based experiments. Finally, we discuss ideas for achieving one-stop simulation package for quantum based secure key distribution experiments. All the modules of simulation framework are viewed from the computer science perspective.
机译:Quantum信息科学的应用对下一代技术的较大和更好的高度。特别是,在量子密码学和量子计算领域,世界已经目睹了各种地面打破的有形产品和有前途的结果。量子密码术是来自量子力学的成熟场之一,并且已经在市场上提供。当前量子密码术状态仍在各种研究中,以达到数字密码学的高度。由于硬件和软件的组合,量子密码术的复杂性更高。缺乏有效的仿真工具来设计和分析量子加密实验延迟了成功的达到距离。在本文中,我们提出了一种框架来实现基于有效的非缠结的量子密码仿真工具。我们应用混合仿真技术即离散事件,连续事件和系统动态。我们还突出了基于商业光子仿真工具的实验的局限性。最后,我们讨论了用于实现量子基于安全​​密钥分布实验的一站式仿真包的想法。从计算机科学的角度来看,查看了模拟框架的所有模块。

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