首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Narrow-band tunable extreme-ultraviolet laser source for lifetime measurements and precision spectroscopy
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Narrow-band tunable extreme-ultraviolet laser source for lifetime measurements and precision spectroscopy

机译:窄带可调近极紫外激光源,用于寿命测量和精密光谱

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摘要

A narrow-band, extreme-ultraviolet laser source is developed that has continuous tunability in the range 96-97.5 nm and a bandwidth below 250 MHz. The versatility of the radiation source is demonstrated in two applications. Accurate values for lifetimes of highly excited molecular quantum states are determined from line-broadening measurements in three electronic states of CO: (WII)-I-1, upsilon = 0 state (IIf components, J = 1-3), tau = 130 +/- 10 ps; (LII)-I-1, upsilon = 0 state (IIf components, J = 1-6), tau = 1.0 +/- 0.3 ns; and K-1 Sigma(+), upsilon = 0 state (J = 0-3), tau = 54 +/- 5 ps. The application of the source in metrology in the extreme-ultraviolet domain is demonstrated by the highly accurate, absolute calibration of narrow resonances in CO. These molecular lines can be used for future reference standards at these short wavelengths. From accurately determined minute frequency shifts near the accidentally predissociated J(f) = 7 level of the (LII)-I-1, upsilon = 0 state the perturber state is characterized as a yet unidentified Rydberg state with an origin at 103 266.92 cm(-1). It is demonstrated that molecular spectroscopy in the extreme-ultraviolet domain at megahertz precision is possible. (C) 1997 Optical Society of America.
机译:开发窄带,极紫外光激光源,其具有连续可调性,在96-97.5nm的范围内和250 MHz以下的带宽。辐射源的多功能性在两个应用中进行了证明。高兴奋的分子量子态的寿命的精确值是根据CO:(Wii)-1-1,Upsilon = 0状态(IIF组件,J = 1-3),Tau = 130的线展现测量+/- 10 ps; (LII)-i-1,Upsilon = 0状态(IIF组件,j = 1-6),tau = 1.0 +/- 0.3 ns;和k-1 sigma(+),Upsilon = 0状态(J = 0-3),Tau = 54 +/- 5 ps。通过CO中的窄谐振的高度准确,绝对校准来证明源在极端紫外域中的源。这些分子线可以用于这些短波长的未来参考标准。从精确确定的微小频率换档附近意外预期的J(F)= 7级(LiI)-1 -1,Upsilon = 0状态,Perturber状态的特征在于尚未识别的Rydberg状态,原点在103 266.92cm( -1)。证明兆赫精度下极端紫外域中的分子光谱是可能的。 (c)1997年光学学会。

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