...
首页> 外文期刊>The Journal of Chemical Physics >Design and evaluation of a pulsed-jet chirped-pulse millimeter-wave spectrometer for the 70-102 GHz region
【24h】

Design and evaluation of a pulsed-jet chirped-pulse millimeter-wave spectrometer for the 70-102 GHz region

机译:70-102 GHz区域的脉冲喷射jet脉冲毫米波光谱仪的设计和评估

获取原文
获取原文并翻译 | 示例
           

摘要

Chirped-pulse millimeter-wave (CPmmW) spectroscopy is the first broadband (multi-GHz in each shot) Fourier-transform technique for high-resolution survey spectroscopy in the millimeter-wave region. The design is based on chirped-pulse Fourier-transform microwave (CP-FTMW) spectroscopy [G. G. Brown, B. C. Dian, K. O. Douglass, S. M. Geyer, S. T. Shipman, and B. H. Pate, Rev. Sci. Instrum. 79, 053103 (2008)]10.1063/1.2919120, which is described for frequencies up to 20 GHz. We have built an instrument that covers the 70-102 GHz frequency region and can acquire up to 12 GHz of spectrum in a single shot. Challenges to using chirped-pulse Fourier-transform spectroscopy in the millimeter-wave region include lower achievable sample polarization, shorter Doppler dephasing times, and problems with signal phase stability. However, these challenges have been partially overcome and preliminary tests indicate a significant advantage over existing millimeter-wave spectrometers in the time required to record survey spectra. Further improvement to the sensitivity is expected as more powerful broadband millimeter-wave amplifiers become affordable. The ability to acquire broadband Fourier-transform millimeter-wave spectra enables rapid measurement of survey spectra at sufficiently high resolution to measure diagnostically important electronic properties such as electric and magnetic dipole moments and hyperfine coupling constants. It should also yield accurate relative line strengths across a broadband region. Several example spectra are presented to demonstrate initial applications of the spectrometer.
机译:ed脉冲毫米波(CPmmW)光谱技术是用于毫米波区域高分辨率测量光谱学的首个宽带(每次发射为数GHz)宽带傅里叶变换技术。该设计基于chi脉冲傅立叶变换微波(CP-FTMW)光谱[G. G. Brown,B。C. Dian,K.O。Douglass,S.M。Geyer,S.T。Shipman和B.H. Pate,Rev。Sci。仪器79,053103(2008)] 10.1063 / 1.2919120,其针对高达20 GHz的频率进行了描述。我们已经构建了一种涵盖70-102 GHz频率范围的仪器,并且可以一次捕获多达12 GHz的频谱。在毫米波区域中使用chi脉冲傅立叶变换光谱法所面临的挑战包括可实现的样本极化降低,多普勒移相时间缩短以及信号相位稳定性问题。但是,这些挑战已得到部分克服,并且初步测试表明,在记录调查光谱所需的时间上,与现有的毫米波光谱仪相比,它具有明显的优势。随着功能更强大的宽带毫米波放大器的价格变得可承受,人们有望进一步提高灵敏度。获得宽带傅里叶变换毫米波光谱的能力使得能够以足够高的分辨率快速测量调查光谱,以测量具有诊断意义的重要电子特性,例如电和磁偶极矩和超精细耦合常数。它还应在整个宽带区域产生准确的相对线强度。给出了几个示例光谱,以演示光谱仪的初始应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号