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1.
A design of resonant cavity with an improved coupling-adjusting mechanism for the W-band EPR spectrometer 下载免费PDF全文
We report a new design of resonant cavity for a W-band electron paramagnetic resonance (EPR) spectrometer. An improved coupling-adjusting mechanism, which is robust, compact, and suits with both solenoid-type and split-pair magnets, is utilized on the cavity, and thus enables both continuous-wave (CW) and pulsed EPR experiments. It is achieved by a tiny metal cylinder in the iris. The coupling coefficient can be varied from 0.2 to 17.9. Furthermore, two pistons at each end of the cavity allow for adjustment of the resonant frequency. A horizontal TE011 geometry also makes the cavity compatible with the two frequently used types of magnets. The coupling-varying ability has been demonstrated by reflection coefficient (S11) measurement. CW and pulsed EPR experiments have been conducted. The performance data indicates a prospect of wide applications of the cavity in fields of physics, chemistry and biology. 相似文献
2.
Tong Liu Bao-Qing Guo Yan-Hui Zhou Jun-Long Zhao Yu-Liang Fang Qi-Cheng Wu Chui-Ping Yang 《Frontiers of Physics》2022,17(6):61502
Transferring entangled states between matter qubits and microwave-field (or optical-field) qubits is of fundamental interest in quantum mechanics and necessary in hybrid quantum information processing and quantum communication. We here propose a way for transferring entangled states between superconducting qubits (matter qubits) and microwave-field qubits. This proposal is realized by a system consisting of multiple superconducting qutrits and microwave cavities. Here, „qutrit” refers to a three-level quantum system with the two lowest levels encoding a qubit while the third level acting as an auxiliary state. In contrast, the microwave-field qubits are encoded with coherent states of microwave cavities. Because the third energy level of each qutrit is not populated during the operation, decoherence from the higher energy levels is greatly suppressed. The entangled states can be deterministically transferred because measurement on the states is not needed. The operation time is independent of the number of superconducting qubits or microwave-field qubits. In addition, the architecture of the circuit system is quite simple because only a coupler qutrit and an auxiliary cavity are required. As an example, our numerical simulations show that high-fidelity transfer of entangled states from two superconducting qubits to two microwave-field qubits is feasible with present circuit QED technology. This proposal is quite general and can be extended to transfer entangled states between other matter qubits (e.g., atoms, quantum dots, and NV centers) and microwave- or optical-field qubits encoded with coherent states. 相似文献
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We investigate the possibility of phantom crossing in the dark energy sector and the solution for the Hubble tension between early and late universe observations. We use robust combinations of different cosmological observations, namely the Cosmic Microwave Background (CMB), local measurement of Hubble constant (), Baryon Acoustic Oscillation (BAO) and SnIa for this purpose. For a combination of CMB+BAO data that is related to early universe physics, phantom crossing in the dark energy sector was confirmed at a 95% confidence level and we obtained the constraint km/s/Mpc at a 68% confidence level, which is in perfect agreement with the local measurement by Riess et al. We show that constraints from different combinations of data are consistent with each other and all of them are consistent with phantom crossing in the dark energy sector. For the combination of all data considered, we obtained the constraint km/s/Mpc at a 68% confidence level and the phantom crossing happening at the scale factor at a 68% confidence level. 相似文献
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窄线宽激光由于其具有单色性好、稳定度高、相干长度长等优点,广泛应用于光电检测领域,包括相干通信、精密测量、光学频率标准、吸收光谱计量以及光与物质相互作用研究等。目前频率稳定的氦氖激光器线宽可以达到MHz量级,分布反馈式(DFB)光纤激光器线宽可达kHz量级,DFB半导体激光器线宽可以达到MHz量级,然而光栅反馈半导体激光器可以实现百kHz量级线宽的输出。为了进一步压窄各类激光器线宽,需要通过反馈控制技术来锁定激光到某一频率参考。该研究将自行设计的超稳腔作为频率参考,实现了632.8 nm外腔半导体激光器(ECDL)线宽的有效压窄。本窄线宽激光产生系统的研制包括超稳腔设计、光路设计、ECDL频率控制以及系统集成。超稳腔采用两镜法布里-珀罗腔(F-P腔)结构,腔体是膨胀系数约为10-6 K-1的微晶玻璃,腔镜为一对反射率达99.988 5%(±0.003 5%)的平面镜和凹面镜。为进一步减小外界环境对F-P腔腔长的影响,需要对腔体进行温度控制,本系统采用四片总功率为96 W的半导体制冷片以及水冷散热设计。同时为了降低声音和空气流动对腔模频率的影响,将F-P腔置于真空度为10-5 torr的真空室中;另外为了有效隔振,腔体与真空室用硅橡胶材料隔离。该系统采用的ECDL为德国Toptica公司的DL pro系列激光器,其具有压电陶瓷(PZT)和电流调制两个频率控制端,响应带宽分别为1 kHz和100 MHz。激光器的频率控制采用了Pound-Drever-Hall (PDH)锁频技术,18 MHz的调制频率加载到激光器的电流调制端,通过对F-P腔的反射信号进行解调获得误差信号,通过两路反馈控制,实现了近1 MHz的锁定带宽。通过对系统的不断优化,最后将自由运转状态下约300 kHz的激光线宽压窄到了10 kHz量级,并且系统运行稳定,连续12小时锁定的频率漂移量约为30 MHz。该研究研制的632.8 nm窄线宽激光源不仅可以应用到吸收光谱计量领域,同时也可以在光学面型精密测量领域发挥重要作用。 相似文献
7.
Micha Rzeczkowski 《Mathematische Nachrichten》2021,294(1):118-131
In the paper we prove that the Nevanlinna counting function and the Carleson function of analytic self‐maps of finitely connected domains with smooth boundary are equivalent. Using this result we obtain the characterization of compact composition operators on Hardy–Orlicz spaces. 相似文献
8.
为研究双温电子等离子体中束流不稳定性的演化过程,用二维粒子模拟(PIC)代码对双温电子束流不稳定性进行了模拟,其中泊松方程用松弛迭代法求解,代码满足电荷守恒、动量守恒和能量守恒条件。在电子双流不稳定性的非线性演化过程中,得到相空间的空洞结构,实空间也相应出现了电子空洞。给出了不稳定性增长率以及相应色散关系。 相似文献
9.
Ethan Y. H. LI Grace M. X. LI Arthur L. B. YANG Candice X. T. ZHANG 《Frontiers of Mathematics in China》2022,17(5):887
We give some sufficient conditions for the nonnegativity of immanants of square submatrices of Catalan-Stieltjes matrices and their corresponding Hankel matrices. To obtain these sufficient conditions, we construct new planar networks with a recursive nature for Catalan-Stieltjes matrices. As applications, we provide a unified way to produce inequalities for many combinatorial polynomials, such as the Eulerian polynomials, Schröder polynomials, and Narayana polynomials. 相似文献
10.
Ou-Zheng Xiao 《中国物理 B》2022,31(8):88401-088401
To reduce the energy demand and operation cost for circular electron positron collider (CEPC), the high efficiency klystrons are being developed at Institute of High Energy Physics, Chinese Academy of Sciences. A 800-kW continuous wave (CW) klystron operating at frequency of 650-MHz has been designed. The results of beam-wave interaction simulation with several different codes are presented. The efficiency is optimized to be 65% with a second harmonic cavity in three-dimensional (3D) particle-in-cell code CST. The effect of cavity frequency error and mismatch load on efficiency of klystron have been investigated. The design and cold test of reentrant cavities are described, which meet the requirements of RF section design. So far, the manufacturing and high-power test of the first klystron prototype have been completed. When the gun operated at DC voltage of 80 kV and current of 15.4 A, the klystron peak power reached 804 kW with output efficiency of about 65.3% at 40% duty cycle. The 1-dB bandwidth is ±0.8 MHZ. Due to the crack of ceramic window, the CW power achieved about 700 kW. The high-power test results are in good agreement with 3D simulation. 相似文献