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Spectral, temporal and temperature features of the nonlinear response of high-temperature superconductors in transient nonlinear spectroscopy

机译:瞬态非线性光谱中高温超导体非线性响应的光谱,时间和温度特征

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摘要

It is shown that basic properties of the nonlinear response of high-temperature superconductors (HTSCs) observed in femtosecond and picosecond pump-probe experiments at high and low pump levels in various variants of the pump-probe spectroscopy, including one- and two-photon excited-state probing, can be interpreted by using two assumptions. The spectral and temperature properties of the HTSC response at low pump levels can be explained taking into account the contributions from interband electronic transitions to the dielectric constant. At the same time, drastic variations in the HTSC response kinetics (temporal features) observed at high pump levels (for a typical pump pulse energy of similar to 10(-7) J in a focal spot of diameter 150 mu m) can be explained by assuming the existence of a 'frozen' (metastable) energy gap in the electronic spectrum of a HTSC. In this case, all the conditions required for the interpretation of a drastic decrease in the relaxation rate of a nonlinear response (degeneracy) are realised due to the specific distribution of the electronic state density immediately after the formation of the energy gap in the electronic spectrum of the HTSC.
机译:结果表明,在飞秒和皮秒泵浦探针实验中,在高和低泵浦水平下,在不同的泵浦探针光谱法中,包括一光子和两光子,高温超导体(HTSC)的非线性响应的基本特性激发态探测可以用两个假设来解释。可以考虑到带间电子跃迁对介电常数的影响,来解释低泵浦水平下HTSC响应的光谱和温度特性。同时,可以解释在高泵浦水平下观察到的HTSC响应动力学(时间特征)的急剧变化(对于直径为150μm的焦点,类似于10(-7)J的典型泵浦脉冲能量)通过假设HTSC的电子光谱中存在“冻结”(可变)能隙。在这种情况下,由于在电子谱中形成能隙之后立即具有特定的电子态密度分布,因此实现了解释非线性响应的弛豫率急剧下降(退化)所需的所有条件HTSC。

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