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国家自然科学基金(61174084)

作品数:5 被引量:7H指数:1
相关作者:刘建设李铁夫赵虎陈炜更多>>
相关机构:清华大学更多>>
发文基金:国家自然科学基金清华大学自主科研计划国家重点基础研究发展计划更多>>
相关领域:电子电信理学机械工程一般工业技术更多>>

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Transparency and amplification in a hybrid system of the mechanical resonator and circuit QED被引量:6
2012年
We theoretically study the transparency and amplification of a weak probe field applied to the cavity in hybrid systems formed by a driven superconducting circuit QED system and a mechanical resonator,or a driven optomechanical system and a superconducting qubit.We find that both the mechanical resonator and the superconducting qubit can result in the transparency to a weak probe field in such hybrid systems when a strong driving field is applied to the cavity.We also find that the weak probe field can be amplified in some parameter regimes.We further study the statistical properties of the output field via the degrees of second-order coherence.We find that the nonclassicality of the output field strongly depends on the system parameters.Our studies show that one can control single-photon transmission in the optomechanical system via a tunable artificial atom or in the circuit QED system via a mechanical resonator.
WANG HuiSUN HuiChenZHANG JingLIU YuXi
Polarization independent superconducting nanowire detector with high-detection efficiency
2015年
The superconducting nanowire single photon detector(SNSPD) draws much attention because of its attractive performance at ultra violet, visible, and nearinfrared wavelengths, and it can be widespread in quantum information technologies. However, how to increase the absorption which can dramatically increase the quantum efficiency of the SNSPD is still a top research issue. In this study, the effect of incident medium and cavity material on the optical absorptance of cavity-integrated SNSPDs was systematically investigated using finite-element method. The simulation results demonstrate that for photons polarized parallel to nanowire orientation, even though the maximum absorptance of the nanowire is insensitive to cavity material,it does increase when the refractive index of incident medium decreases. For perpendicularly polarized photons, both incident medium and cavity material play significant roles,and the absorptance curves get closer to the parallel case as the refractive index of cavity material increases. Based on these results, two cavity-integrated SNSPDs with frontillumination structure which can enhance the absorptance for both parallel and perpendicular photons are proposed.Finally, a design to realize polarization-independent SNSPDs with high absorptance is presented.
He-Yu YinHan CaiRi-Sheng ChengZheng XuZhen-Nan JiangJian-She LiuTie-Fu LiWei Chen
Control problems in quantum systems被引量:1
2012年
The past decade or two has witnessed tremendous progress in theory and practice of quantum control technologies.Bridging different scientific disciplines ranging from fundamental particle physics to nanotechnology,the goal of quantum control has been to develop effective and efficient tools for common analysis and design,but more importantly would pave the way for future technological applications.This article briefly reviews basic quantum control theory from the perspective of modeling,analysis and design,as well as considers future research directions.
WU ReBingZHANG JingLI ChunWenLONG GuiLuTARN TzyhJong
关键词:量子系统控制技术粒子物理学学科范围量子控制
用于超导量子计算的三维谐振腔仿真研究
2014年
在三维传输子超导量子位系统中,三维空间微波谐振腔代替了传统的共面波导谐振腔。文中对适用于传输子超导量子位的三维空间谐振腔进行了输入输出耦合强度、材料电导率和腔体表面粗糙度等因素的仿真分析,得到了谐振腔最低本征模式(TE101)的谐振频率、有载品质因子、插入损耗与这些因素之间的变化关系。
刘其春赵虎李铁夫刘建设陈炜
关键词:仿真本征模式
Construction of two-qubit logical gates by transmon qubits in a three-dimensional cavity
2018年
We report the implementation of qubit-lubit coupling in a three-dimensional (3D) cavity, using the exchange of virtual photons, to realize logical operations. We measure single photon and multi-photon transitions in this qubit-qubit coupling system and obtain its energy avoided-crossing spectrum. With ac-Stark effect, fast control of the qubits is achieved to tune the effective coupling on and off and the state-swap gate SWAP is successfully constructed. Moreover, using two-photon transition between the ground state and doubly observed. A quarter period of this oscillation corresponds to states, bSWAP and are the foundations of future gate excited states, a kind of two-photon Rabi-like oscillation is the logical gate bSbSWAP, which is used for generating Bell preparation of two-qubit Bell states and realization of CNOT
Han CaiQi-Chun LiuCChang-Hao ZhaoYing-Shan ZhangJian-She LiuWei Chen
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