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A tunable general purpose Q-band resonator for CW and pulse EPR/ENDOR experiments with large sample access and optical excitation

机译:适用于CW和脉冲EPR / ENDOR实验的可调通用Q波段谐振器,具有大量样品通道和光激发

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We describe a frequency tunable Q-band cavity (34 GHz) designed for CW and pulse Electron Paramagnetic Resonance (EPR) as well as Electron Nuclear Double Resonance (ENDOR) and Electron Electron Double Resonance (ELDOR) experiments. The TE _(011) cylindrical resonator is machined either from brass or from graphite (which is subsequently gold plated), to improve the penetration of the 100 kHz field modulation signal. The (self-supporting) ENDOR coil consists of four 0.8 mm silver posts at 2.67 mm distance from the cavity center axis, penetrating through the plunger heads. It is very robust and immune to mechanical vibrations. The coil is electrically shielded to enable CW ENDOR experiments with high RF power (500 W). The top plunger of the cavity is movable and allows a frequency tuning of ±2 GHz. In our setup the standard operation frequency is 34.0 GHz. The microwaves are coupled into the resonator through an iris in the cylinder wall and matching is accomplished by a sliding short in the coupling waveguide. Optical excitation of the sample is enabled through slits in the cavity wall (transmission ~60%). The resonator accepts 3 mm o.d. sample tubes. This leads to a favorable sensitivity especially for pulse EPR experiments of low concentration biological samples. The probehead dimensions are compatible with that of Bruker flexline Q-band resonators and it fits perfectly into an Oxford CF935 Helium flow cryostat (4-300 K). It is demonstrated that, due to the relatively large active sample volume (20-30 μl), the described resonator has superior concentration sensitivity as compared to commercial pulse Q-band resonators. The quality factor (Q _L) of the resonator can be varied between 2600 (critical coupling) and 1300 (over-coupling). The shortest achieved π/2-pulse durations are 20 ns using a 3 W microwave amplifier. ENDOR (RF) π-pulses of 20 μs (~1H @ 51 MHz) were obtained for a 300 W amplifier and 7 μs using a 2500 W amplifier. Selected applications of the resonator are presented.
机译:我们描述了为CW和脉冲电子顺磁共振(EPR)以及电子核双共振(ENDOR)和电子双共振(ELDOR)实验设计的可调谐Q波段腔(34 GHz)。 TE _(011)圆柱谐振器由黄铜或石墨(随后镀金)制成,以提高100 kHz磁场调制信号的穿透力。 ENDOR线圈(自支撑)由四个0.8毫米的银柱组成,这些柱与腔中心轴的距离为2.67毫米,并穿过柱塞头。它非常坚固并且不受机械振动的影响。线圈经过电屏蔽,可在高射频功率(500 W)下进行CW ENDOR实验。腔体的顶部柱塞是可移动的,并允许±2 GHz的频率调谐。在我们的设置中,标准工作频率为34.0 GHz。微波通过圆柱壁中的虹膜耦合到谐振器中,并且通过耦合波导中的滑动短路来实现匹配。通过腔壁上的缝隙可以实现样品的光激发(透射率约为60%)。谐振器的外径为3 mm。样品管。这导致了良好的灵敏度,尤其是对于低浓度生物样品的脉冲EPR实验。探头尺寸与布鲁克Flexline Q波段谐振器兼容,并且非常适合牛津CF935氦气流低温恒温器(4-300 K)。已经证明,由于相对较大的活性样品体积(20-30μl),与商用脉冲Q带谐振器相比,所述谐振器具有优异的浓度灵敏度。谐振器的品质因数(Q _L)可以在2600(临界耦合)和1300(过耦合)之间变化。使用3 W微波放大器,最短的π/ 2脉冲持续时间为20 ns。对于300 W放大器,使用20μs(〜1H @ 51 MHz)的ENDOR(RF)π脉冲,使用2500 W放大器获得7μs。介绍了谐振器的选定应用。

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