S-band electron spin resonance spectroscopy using a short-circuited coplanar waveguide resonator

Subhadip Roy, A. Nandi, P. Das, C. Mitra
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引用次数: 1

Abstract

In this work, we study the development of a coplanar waveguide (CPW) resonator and its use in an electron spin resonance (ESR) spectrometer. The CPW resonator is designed to operate in S-band (2-4 GHz), with a short circuit configuration leading to miniaturization. It is so constructed such that it has a characteristic impedance of 50 ohms. The resonator supports quasi-TEM mode of propagation owing to its uniplanar nature, demanding detailed electromagnetic simulation. The design parameters and the electromagnetic field distribution are obtained from the simulation. The resonator is fabricated using optical lithography with a rapid prototyping technique. The characteristic response of the resonator is measured by coupling it to a Vector Network Analyzer (VNA). The ESR absorption spectrum of free radical 2,2-diphenyl-1-picrylhydrazyl (DPPH) is captured by using this resonator in reflection geometry. The microwave magnetic field distribution at the sample position is investigated. The ascertained value of Lande g-factor is consistent with that reported in the literature. Spin sensitivity of the order of 1015 spins/gauss is achieved upon using this resonator at room temperature. The quality factor of this resonator is found to be low and this makes it suitable for use in a Pulsed ESR spectrometer.
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利用短路共面波导谐振器的s波段电子自旋共振光谱
在这项工作中,我们研究了共面波导(CPW)谐振器的发展及其在电子自旋共振(ESR)光谱仪中的应用。CPW谐振器设计为在S波段(2-4 GHz)工作,短路配置可实现小型化。它的结构使得它具有50欧姆的特性阻抗。谐振器由于其单极性而支持准TEM传播模式,需要详细的电磁模拟。通过仿真得到了设计参数和电磁场分布。谐振器是使用光学光刻和快速原型技术制造的。谐振器的特性响应是通过将其耦合到矢量网络分析器(VNA)来测量的。利用该谐振腔在反射几何中捕获了自由基2,2-二苯基-1-苦基肼(DPPH)的ESR吸收光谱。研究了样品位置的微波磁场分布。Lande g因子的确定值与文献中报道的值一致。在室温下使用该谐振器可获得1015自旋/高斯量级的自旋灵敏度。发现这种谐振器的品质因数低,这使得它适合在脉冲ESR光谱仪中使用。
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