论文标题
哈伯德$ u $的空腔工程通过声子polariton
Cavity engineering of Hubbard $U$ via phonon polaritons
论文作者
论文摘要
泵探针实验表明,通过驱动具有谐振的中红外激光脉冲的红外活性声子来控制电子相关性。在这项工作中,我们研究了这些观测值背后的两个可能的微观非线性电子 - 光子相互作用,即平方晶格位移与电子密度或双占用率的耦合。我们研究光腔中的光子音波耦合是否可以对电子相关性进行类似的控制。我们首先表明,在黑腔电子相互作用中增加了,排除了可以通过非线性电子波偶联在腔体中有效减少电子电子排斥来增强超导体的$ t_c $。我们进一步发现,驱动腔后,电子相互作用减少。出现了两个不同的机制:(i)强烈的耦合方案,其中声子在与反耦合强度成正比的时间显示延迟响应,以及(ii)一个超强的耦合方案,在驱动声子极性时,响应即时响应。当电子伴侣与涉及红外活性声子模式的语音子极化子时,我们进一步确定了电子光谱函数中的独特特征,即将摇动带分为三个频段。这可以通过角度分辨光发射光谱法观察到这一点。
Pump-probe experiments have suggested the possibility to control electronic correlations by driving infrared-active phonons with resonant midinfrared laser pulses. In this work we study two possible microscopic nonlinear electron-phonon interactions behind these observations, namely coupling of the squared lattice displacement either to the electronic density or to the double occupancy. We investigate whether photon-phonon coupling to quantized light in an optical cavity enables similar control over electronic correlations. We first show that inside a dark cavity electronic interactions increase, ruling out the possibility that $T_c$ in superconductors can be enhanced via effectively decreased electron-electron repulsion through nonlinear electron-phonon coupling in a cavity. We further find that upon driving the cavity, electronic interactions decrease. Two different regimes emerge: (i) a strong coupling regime where the phonons show a delayed response at a time proportional to the inverse coupling strength, and (ii) an ultra-strong coupling regime where the response is immediate when driving the phonon polaritons resonantly. We further identify a distinctive feature in the electronic spectral function when electrons couple to phonon polaritons involving an infrared-active phonon mode, namely the splitting of the shake-off band into three bands. This could potentially be observed by angle-resolved photoemission spectroscopy.