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Development of the polarization tracking scheme for free-spacequantum cryptography

机译:自由空间量子密码学的极化跟踪方案的开发

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Quantum cryptography is a new technique for transmitting quantum information. The information is securely transmitted due to the laws of physics. In such systems, the vehicle that transfers quantum information is a single photon. The problem with using photons is that the transmission distance is limited by the absorption of the photons by the optical fiber along which they pass. The maximum demonstrated range so far is approximately 100 km. Using free-space quantum cryptography between a ground station and a satellite is a possible way of sending quantum information farther than is possible with optical fibers. This is because there is no birefringence effect in the atmosphere. However, there is a complication in that the directions of the polarization basis between the transmitter and the receiver must coincide with each other. This polarization changes because the mobile terminals for free-space transmission continuously change their attitudes. If the transmission protocol is based on polarization, it is necessary to compensate for the change in attitude between the mobile terminals. We are developing a scheme to track the polarization basis between the transceivers. The preliminary result is presented.
机译:量子密码术是一种用于传输量子信息的新技术。由于物理定律,该信息安全地传播。在这样的系统中,转移量子信息的车辆是单个光子。使用光子的问题是传输距离受到它们通过的光纤吸收光子的限制。到目前为止,最大展示的范围约为100公里。在地面站和卫星之间使用自由空间量子加密是将量子信息发送比可能的光纤的量子信息的可能方法。这是因为大气中没有双折射效应。然而,在发射器和接收器之间的偏振基的方向上存在并发症必须彼此重合。这种极化发生变化,因为用于自由空间传输的移动终端不断改变它们的态度。如果传输协议基于偏振,则必须补偿移动终端之间的姿态的变化。我们正在开发一个追踪收发器之间的极化基础的方案。提出了初步结果。

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