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State transfer and entanglement between two-and four-level atoms in a cavity
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作者 李思吾 冯田峰 +1 位作者 胡骁龙 周晓祺 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第10期522-530,共9页
Qudits with a large Hilbert space to host quantum information are widely utilized in various applications, such as quantum simulation and quantum computation, but the manipulation and scalability of qudits still face ... Qudits with a large Hilbert space to host quantum information are widely utilized in various applications, such as quantum simulation and quantum computation, but the manipulation and scalability of qudits still face challenges. Here, we propose a scheme to directly and locally transfer quantum information from multiple atomic qubits to a single qudit and vice versa in an optical cavity. With the qubit–qudit interaction induced by the cavity, our scheme can transfer quantum states efficiently and measurement-independently. In addition, this scheme can robustly generate a high-dimensional maximal entangled state with asymmetric particle numbers, showing its potential in realizing an entanglement channel. Such an information interface for qubits and qudit may have enlightening significance for future research on quantum systems in hybrid dimensions. 展开更多
关键词 quantum state transfer quantum entanglement cavity quantum eletrodynamics
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Experimental demonstration of a fast calibration method for integrated photonic circuits with cascaded phase shifters
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作者 Junqin Cao Zhixin Chen +5 位作者 Yaxin Wang tianfeng feng Zhihao Li Zeyu Xing Huashan Li Xiaoqi Zhou 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第11期329-335,共7页
With the development of research on integrated photonic quantum information processing,the integration level of the integrated quantum photonic circuits has been increasing continuously,which makes the calibration of ... With the development of research on integrated photonic quantum information processing,the integration level of the integrated quantum photonic circuits has been increasing continuously,which makes the calibration of the phase shifters on the chip increasingly difficult.For the calibration of multiple cascaded phase shifters that is not easy to be decoupled,the resources consumed by conventional brute force methods increase exponentially with the number of phase shifters,making it impossible to calibrate a relatively large number of cascaded phase shifters.In this work,we experimentally validate an efficient method for calibrating cascaded phase shifters that achieves an exponential increase in calibration efficiency compared to the conventional method,thus solving the calibration problem for multiple cascaded phase shifters.Specifically,we experimentally calibrate an integrated quantum photonic circuit with nine cascaded phase shifters and achieve a high-precision calibration with an average fidelity of 99.26%. 展开更多
关键词 cascaded phase shifters CALIBRATION quantum photonic chip
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