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Active microwave cavity for electron paramagnetic resonance (EPR) apparatus

机译:电子顺磁共振(EPR)装置的有源微波腔

摘要

This disclosure relates to a microwave amplifier (22) having an active X-Band microwave cavity (33) for use in electron paramagnetic resonance (EPR) measurements on large, lossy, irradiated, samples such as a human finger. The amplifier comprises an input section (31), a drift section (32) and an output section (33) which is the aforementioned active microwave cavity. An electron beam is used to input RF energy into the cavity. The input and output section have small helical couplers (34) for coupling RF energy onto and off of the electron beam. The RF wave is essentially "trapped" in the cavity because of the non-reciprocal nature of the electron beam medium and because the guide (i.e., drift section) at the input to the cavity has dimensions such that the frequency of the RF microwave energy is below the guides lower cut-off frequency. Also, a frequency "locking" effect occurs in the output cavity. The input frequency can be varied from 1-2% yet the output frequency does not change. The active microwave cavity has a cylindrically shaped window (41) located at the back-end of the cavity which extends inward towards the region of high RF fields inside the cavity. A large, lossy, irradiated sample such as a finger can be inserted into or behind this window and analyzed for radiation damage.
机译:本公开涉及一种具有有源X波段微波腔体(33)的微波放大器(22),该微波腔体用于在大的,有损的,被辐射的样本(例如人的手指)上进行电子顺磁共振(EPR)测量。该放大器包括输入部分(31),漂移部分(32)和输出部分(33),其是上述有源微波腔。电子束用于将RF能量输入到腔中。输入和输出部分具有小的螺旋耦合器(34),用于将RF能量耦合到电子束上和从电子束上耦合出去。由于电子束介质的不可逆性质,并且由于在腔体输入处的波导(即漂移部分)具有一定的尺寸,使得RF微波能量的频率,使得RF波基本上被“捕获”在腔体中低于导板的较低截止频率。同样,在输出腔中发生频率“锁定”效应。输入频率可以在1-2%之间变化,但输出频率不会改变。有源微波腔具有位于腔的后端的圆柱形窗口(41),该窗口向内朝腔内部的高RF场区域延伸。可以将大的,有损的,受辐照的样品(例如手指)插入此窗口中或窗口后面,并分析辐射损伤。

著录项

  • 公开/公告号US4674513A

    专利类型

  • 公开/公告日1987-06-23

    原文格式PDF

  • 申请/专利权人 JASPER JR.;LOUIS J.;

    申请/专利号US19850783992

  • 发明设计人 LOUIS J. JASPER JR.;

    申请日1985-10-04

  • 分类号A61B6/00;

  • 国家 US

  • 入库时间 2022-08-22 07:09:07

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