Betzig Eric
Opt Express. 2005 Apr 18;13(8):3021-36. doi: 10.1364/opex.13.003021.
Recently, new classes of optical lattices were identified, permitting the creation of arbitrarily large two- and three-dimensional arrays of tightly confined excitation maxima of controllable periodicity and polarization from the superposition of a finite set of plane waves. Here, experimental methods for the generation of such lattices are considered theoretically in light of their potential applications, including high resolution dynamic live cell imaging, photonic crystal fabrication, and quantum simulation and quantum computation using ultracold atoms.
最近,人们发现了新型光学晶格,通过有限平面波集的叠加,可以创建具有可控周期性和极化的任意大的二维和三维紧密受限激发最大值阵列。在此,根据其潜在应用,从理论上考虑了生成此类晶格的实验方法,包括高分辨率动态活细胞成像、光子晶体制造以及使用超冷原子的量子模拟和量子计算。