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SARG04 and AK15 Protocols Based on the Run-Time Execution and QBER

机译:SARG04和AK15基于运行时执行和QGER的协议

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Quantum computer has become a concern since the scientists have approved the ability of breaking the classical cryptographic methods in a potential Low-Run- Time Execution. The Run-Time could mean a risk for most of the classical algorithms; if not all. While the classical system depends on the sequential order of bits, quantum system will utilize simultaneous multi-channel submissions. These submissions can be used in several aspects of the quantum system, which include hardware, software, and applications. Also, the power of cryptographic algorithms is based on the processing machine or the Run-Time Execution (RTE). In cryptography, the preference usually is given to simple and fast processing algorithms, where in this paper will compare between two Quantum Key Distribution (QKD) Protocol algorithms. The comparison will discuss and demonstrate the Run-Time Execution between the SARG04 and AK15 Protocols, and both algorithms will be applied to the same number of qubits as well as the measurement mechanism. In addition, both protocols will be experienced to investigate the Quantum Bit Error Rate (QBER), and the possibility of the QBER occurs during qubits transmissions.
机译:Quantum Computer已成为一个问题,因为科学家们批准了在潜在的低运行时间执行中打破古典密码方法的能力。运行时间可能意味着大多数古典算法的风险;如果不是全部。虽然古典系统取决于位的顺序,但量子系统将使用同时多通道提交。这些提交可以用于量子系统的若干方面,包括硬件,软件和应用程序。此外,加密算法的力量基于处理机或运行时执行(RTE)。在密码造影中,通常优先于简单和快速的处理算法,其中本文将在两个量子密钥分布(QKD)协议算法之间进行比较。比较将讨论并演示SARG04和AK15协议之间的运行时执行,并且两种算法将应用于相同数量的Qubits以及测量机制。此外,两种协议将经历以研究量子塔错误率(QBET),并且在QGBITS传输期间发生QBER的可能性。

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