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首页> 外文期刊>Applied Physics B: Lasers and Optics >Coherent heterodyne-assisted pulsed spectroscopy: sub-Doppler two-photon spectra of krypton, characterizing a tunable nonlinear-optical ultraviolet light source
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Coherent heterodyne-assisted pulsed spectroscopy: sub-Doppler two-photon spectra of krypton, characterizing a tunable nonlinear-optical ultraviolet light source

机译:相干外差辅助脉冲光谱:sub的多普勒双光子光谱,表征了可调谐的非线性光学紫外光源

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A chirp-minimized, nanosecond-pulsed system has been developed to generate tunable coherent ultraviolet light at ∼212.5 nm by fourth-harmonic conversion of output from an amplified, injection-seeded optical parametric oscillator (OPO). Our CHAPS (coherent heterodyne-assisted pulsed spectroscopy) method is used to characterize the frequency stability and optical bandwidth of the system’s output radiation by recording sub-Doppler two-photon excitation spectra of krypton. In our new scanned-reference variant of CHAPS, the central frequency for each amplified OPO pulse is logged by the optical-heterodyne chirp-analysis software, with the frequency of the seed laser slowly tuned and monitored by a high-resolution wavemeter, unlike our previous implementation of CHAPS where the seed-laser frequency was fixed. For the amplified, up-converted pulses at ∼212.5 nm, our CHAPS measurements indicate an optical bandwidth of ∼100 MHz, consistent with the Fourier-transform limit of their duration (∼4.5 ns).
机译:已开发出一种chi最小化的纳秒脉冲系统,通过对放大的,注入种子的光学参量振荡器(OPO)的输出进行四次谐波转换,生成约212.5 nm的可调相干紫外光。我们的CHAPS(相干外差辅助脉冲光谱)方法通过记录sub的多普勒双光子双光子激发光谱来表征系统输出辐射的频率稳定性和光带宽。在我们新的CHAPS扫描参考变量中,每个放大的OPO脉冲的中心频率都由光学外差线性调频分析软件记录下来,而种子激光的频率则由高分辨率波长计缓慢调谐和监视,这与我们的方法不同。 CHAPS的先前实施方式,其中种子激光频率固定。对于〜212.5 nm处的放大,上变频脉冲,我们的CHAPS测量表明光带宽为〜100 MHz,与其持续时间(〜4.5 ns)的傅里叶变换极限一致。

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