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APS -APS March Meeting 2017 - Event - Bloch-Siegert shift in monolayer WS2

机译:APS -APS三月会议2017-事件-单层WS2中的Bloch-Siegert转移

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Coherent light-matter interaction can be used to manipulate the energy levels of atoms, molecules and solids. Under off-resonance photon driving in such systems, repulsion between photon-dressed (Floquet) states can lead to a shift of energy resonance. The dominant effect is the optical Stark shift, but there is an additional contribution from the so-called Bloch-Siegert shift. Although it is common in atoms, the observation of Bloch-Siegert shift in solids has so far been limited only to artificial atoms since the shifts were tiny and inseparable from the optical Stark shift. Here we observe an exceptionally large Bloch-Siegert shift in monolayer WS2 by virtue of the strong light-matter interaction in this system. Moreover, the Bloch-Siegert shift can be separated entirely from the optical Stark shift by breaking time-reversal symmetry.
机译:相干光-质相互作用可以用于操纵原子,分子和固体的能级。在此类系统中的非共振光子驱动下,光子修饰(Floquet)状态之间的排斥会导致能量共振的转移。主导效应是光学斯塔克位移,但是所谓的布洛赫-西格特位移又产生了另外的贡献。尽管它在原子中很常见,但由于固体的Bloch-Siegert位移很小且与光学Stark位移不可分离,因此到目前为止,对固体Bloch-Siegert位移的观察仅限于人造原子。在此,由于该系统中强烈的光-质相互作用,我们在单层WS2中观察到异常大的Bloch-Siegert位移。此外,通过打破时间反转对称性,可以将Bloch-Siegert位移与光学Stark位移完全分开。

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