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首页> 外文期刊>Journal of magnetic resonance >Microwave frequency modulation in CW EPR at W-band using a loop-gap resonator
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Microwave frequency modulation in CW EPR at W-band using a loop-gap resonator

机译:使用环隙谐振器的W波段CW EPR中的微波频率调制

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摘要

Loop-gap resonator (LGR) technology has been extended to W-band (94 GHz). One output of a multiarm Q-band (35 GHz) EPR bridge was translated to W-band for sample irradiation by mixing with 59 GHz; similarly, the EPR signal was translated back to Q-band for detection. A cavity resonant in the cylindrical TE011 mode suitable for use with 100 kHz field modulation has also been developed. Results using microwave frequency modulation (FM) at 50 kHz as an alternative to magnetic field modulation are described. FM was accomplished by modulating a varactor coupled to the 59 GHz oscillator. A spin-label study of sensitivity was performed under conditions of overmodulation and y(2)H(1)(2)T(1)T(2), < 1. EPR spectra were obtained, both absorption and dispersion, by lock-in detection at the fundamental modulation frequency (50 kHz), and also at the second and third harmonics (100 and 150 kHz). Source noise was deleterious in first harmonic spectra, but was very low in second and third harmonic spectra. First harmonic microwave FM was transferred to microwave modulation at second and third harmonics by the spins, thus satisfying the "transfer of modulation" principle. The loaded Q-value of the LGR with sample was 90 (i.e., a bandwidth between 3 dB points of about 1 GHz), the resonator efficiency parameter was calculated to be 9.3 G at one W incident power, and the frequency deviation was 11.3 MHz p-p, which is equivalent to a field modulation amplitude of 4 G. 14, band EPR using an LGR is a favorable configuration for microwave FM experiments. (C) 2007 Published by Elsevier Inc.
机译:环隙谐振器(LGR)技术已扩展到W波段(94 GHz)。多臂Q波段(35 GHz)EPR桥的一个输出通过与59 GHz混合而转换为W波段以进行样品辐照;类似地,将EPR信号转换回Q波段进行检测。还已经开发出适用于100 kHz场调制的圆柱形TE011模式谐振腔。描述了使用50 kHz的微波频率调制(FM)代替磁场调制的结果。通过调制耦合到59 GHz振荡器的变容二极管来实现FM。在过调制和y(2)H(1)(2)T(1)T(2)(<1)的条件下进行了灵敏度的自旋标记研究。通过锁定,获得了EPR光谱,吸收和分散在基本调制频率(50 kHz)以及二次谐波和三次谐波(100和150 kHz)时进行检测。源噪声在一次谐波频谱中有害,但在二次谐波和三次谐波频谱中非常低。自旋将一次谐波微波FM通过二次和三次谐波转移至微波调制,因此满足“调制转移”原理。样品中LGR的加载Q值为90(即,约1 GHz的3 dB点之间的带宽),在1 W入射功率下,谐振器效率参数计算为9.3 G,频率偏差为11.3 MHz pp,相当于4 G的场调制幅度。14,使用LGR的EPR频段是微波FM实验的理想配置。 (C)2007年由Elsevier Inc.出版

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