首页> 外文期刊>The Journal of Chemical Physics >THE MICROWAVE SPECTRUM OF THE NH2 RADICAL - THE HYPERFINE STRUCTURE OF THE B-2(1) GROUND ELECTRONIC STATE
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THE MICROWAVE SPECTRUM OF THE NH2 RADICAL - THE HYPERFINE STRUCTURE OF THE B-2(1) GROUND ELECTRONIC STATE

机译:NH2自由基的微波光谱-B-2(1)基电子态的超精细结构

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The pure rotational spectrum of the NH2 radical in its (X) over tilde B-2(1) ground electronic state was measured in the frequency region of 230-470 GHz by microwave spectroscopy. The radical was generated in a free space cell by de-glow discharge of NH3. Seventy nine fine and hyperfine components of four rotational transitions were measured, and were analyzed by least squares methods. The hyperfine coupling constants for both the nitrogen and hydrogen nuclei were redetermined with higher precision than those of the previous analysis for microwave optical double resonance (MODR) data. The nuclear spin-rotation constants for the hydrogen nucleus as well as the nitrogen nucleus were found to be anomalously large. The anomalous constant of C-aa(H) is interpreted by the same reason for the anomalous large value for C-aa(N) originating from the large A constant and the relatively low-lying (A) over tilde (2)A(1) electronic state. (C) 1997 American institute of Physics. [References: 63]
机译:通过微波光谱法在230-470 GHz的频率范围内测量了在代字号B-2(1)基电子态上(X)中NH2自由基的纯旋转光谱。自由基是通过NH3的去辉光放电在自由空间单元中生成的。测量了四个旋转过渡的79个精细和超精细成分,并通过最小二乘法进行了分析。重新确定了氮和氢原子核的超精细耦合常数,其精度比以前对微波光学双共振(MODR)数据的分析精度更高。发现氢核和氮核的核自旋旋转常数异常大。 C-aa(H)的反常常数是由相同的原因解释的,因为C-aa(N)的反常值很大,它源自大A常数和波浪线(2)A( 1)电子状态。 (C)1997美国物理研究所。 [参考:63]

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