Mukherjee Sebabrata, Thomson Robert R
Opt Lett. 2015 Dec 1;40(23):5443-6. doi: 10.1364/OL.40.005443.
We experimentally demonstrate the photonic realization of a dispersionless flat band in a quasi-one-dimensional photonic lattice fabricated by ultrafast laser inscription. In the nearest neighbor tight binding approximation, the lattice supports two dispersive and one nondispersive (flat) band. We experimentally excite superpositions of flat-band eigenmodes at the input of the photonic lattice and show the diffractionless propagation of the input states due to their infinite effective mass. In the future, the use of photonic rhombic lattices, together with the successful implementation of a synthetic gauge field, will enable the observation of Aharonov-Bohm photonic caging.
我们通过实验证明了在由超快激光写入制造的准一维光子晶格中无色散平带的光子实现。在最近邻紧束缚近似下,该晶格支持两个色散带和一个非色散(平)带。我们在光子晶格的输入端通过实验激发平带本征模的叠加,并由于其无限有效质量展示了输入态的无衍射传播。未来,光子菱形晶格的使用,连同合成规范场的成功实现,将能够观测到阿哈罗诺夫 - 玻姆光子囚禁。