利用超冷中性等离子体中的电场诱导电子萃取测量校准加热速率

IF 2.1 3区 物理与天体物理 Q2 PHYSICS, FLUIDS & PLASMAS
John M. Guthrie, Puchang Jiang, Jacob L. Roberts
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引用次数: 0

摘要

等离子体电子在外部场或其他过程诱导下的加热率可以作为一种实验工具来测量基本的等离子体特性,如电导率或电子-离子碰撞率。我们已经开发出了一种技术,可以精确测量超冷中性等离子体(UNPs)中的电子加热率,同时将测量结果与校准的加热量进行参照。该技术使用一连串的外加电场,分为四个部分:控制超冷中性等离子体中电子和离子的比例;提供外加电场的时间,使电子加热,并在外加电场后使电子热化;使用对电子温度敏感的方法从超冷中性等离子体中提取电子,从而测量电子加热;提取剩余电子,测量电子(以及离子)总数。用于测量加热速率的主要信号是在实验的第三部分测量逸出的电子数,因为逸出的电子数越多,表明加热量越大。我们通过测量高频射频(RF)场引起的电子加热来说明这一技术的使用。除了主技术之外,我们还开发了几种子技术来校准电子温度、电子密度、加热量和应用射频场振幅。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calibrated heating rate measurements using electric-field-induced electron extraction in ultracold neutral plasmas
The heating rate of plasma electrons induced by external fields or other processes can be used as an experimental tool to measure fundamental plasma properties such as electrical conductivity or electron–ion collision rates. We have developed a technique that can measure electron heating rates in ultracold neutral plasmas (UNPs) with $\sim 10\,\%$ precision while simultaneously referencing the measurement to a calibrated amount of heating. This technique uses a sequence of applied electric fields in four sections: to control the ratio of electrons to ions in the UNP; to provide a time for the application of fields that cause electron heating and subsequent thermalization of the electrons after the application of those fields; to extract electrons from the UNP using a method sensitive to electron temperature that allows the measurement of electron heating; and to extract the remaining electrons to measure the total electron (and therefore ion) number. The primary signal used to measure the heating rate is the measurement of the number of electrons that escape in the third section of the experiment as a larger number of escaping electrons indicates a larger amount of heating. We illustrate the use of this technique by measuring electron heating caused by high-frequency radiofrequency (RF) fields. In addition to the main technique, several subtechniques to calibrate the electron temperature, electron density, amount of heating and applied RF field amplitude were developed as well.
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来源期刊
Journal of Plasma Physics
Journal of Plasma Physics 物理-物理:流体与等离子体
CiteScore
3.50
自引率
16.00%
发文量
106
审稿时长
6-12 weeks
期刊介绍: JPP aspires to be the intellectual home of those who think of plasma physics as a fundamental discipline. The journal focuses on publishing research on laboratory plasmas (including magnetically confined and inertial fusion plasmas), space physics and plasma astrophysics that takes advantage of the rapid ongoing progress in instrumentation and computing to advance fundamental understanding of multiscale plasma physics. The Journal welcomes submissions of analytical, numerical, observational and experimental work: both original research and tutorial- or review-style papers, as well as proposals for its Lecture Notes series.
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