Ballarini Dario, Caputo Davide, Dagvadorj Galbadrakh, Juggins Richard, Giorgi Milena De, Dominici Lorenzo, West Kenneth, Pfeiffer Loren N, Gigli Giuseppe, Szymańska Marzena H, Sanvitto Daniele
CNR NANOTEC-Institute of Nanotechnology, Via Monteroni, 73100, Lecce, Italy.
University of Salento, Via Arnesano, 73100, Lecce, Italy.
Nat Commun. 2020 Jan 10;11(1):217. doi: 10.1038/s41467-019-13733-x.
Quantum fluids of light are realized in semiconductor microcavities using exciton-polaritons, solid-state quasi-particles with a light mass and sizeable interactions. Here, we use the microscopic analogue of oceanographic techniques to measure the excitation spectrum of a thermalised polariton condensate. Increasing the fluid density, we demonstrate the transition from a free-particle parabolic dispersion to a linear, sound-like Goldstone mode characteristic of superfluids at equilibrium. Notably, we reveal the effect of an asymmetric pumping by showing that collective excitations are created with a definite direction with respect to the condensate. Furthermore, we measure the critical sound speed for polariton superfluids close to equilibrium.
利用激子极化激元(一种具有轻质量和可观相互作用的固态准粒子),在半导体微腔中实现了光量子流体。在此,我们使用海洋学技术的微观类似物来测量热化极化激元凝聚体的激发光谱。通过增加流体密度,我们展示了从自由粒子抛物线色散到线性的、类似于超流体平衡时的类声戈德斯通模式的转变。值得注意的是,我们通过表明集体激发相对于凝聚体以确定方向产生,揭示了非对称泵浦的影响。此外,我们测量了接近平衡的极化激元超流体的临界声速。