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Cavity ringdown spectroscopy measurements of the infrared water vapor continuum

机译:红外水蒸气连续体的腔衰荡光谱测量

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We report measurements of the water vapor continuum using infrared cavity ringdown spectroscopy at frequencies of 931.002, 944.195, and 969.104 cm~(-1). Our values of the water vapor continuum coefficients for self-broadening at T=296 K are C_s~0 (931 cm~(-1))=2.23+-0.17, C_s~0(944 cm~(-1))=2.02+-0.13, and C_s~0(969 cm~(-1))=1.79+-0.21X10~(-22) molecules~(-1) cm~2 atm~(-1). Our measurements are found to be in good agreement with the far wing line shape theory of Ma and Tipping, but we find that empirical models of the water vapor continuum, widely used in radiative transfer calculations, significantly overestimate the observed self-broadened continuum.
机译:我们报告了使用红外腔衰荡光谱在931.002、944.195和969.104 cm〜(-1)频率下对水蒸气连续体的测量结果。我们在T = 296 K时自膨胀的水汽连续系数为C_s〜0(931 cm〜(-1))= 2.23 + -0.17,C_s〜0(944 cm〜(-1))= 2.02 + -0.13和C_s〜0(969 cm〜(-1))= 1.79 + -0.21X10〜(-22)分子〜(-1)cm〜2 atm〜(-1)。我们的测量结果与Ma和Tipping的远翼线形理论非常吻合,但是我们发现,广泛用于辐射传输计算中的水蒸气连续体的经验模型大大高估了观测到的自增宽连续体。

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