Bulmer C H, Burns W K, Giallorenzi T G
Appl Opt. 1979 Oct 1;18(19):3282-95. doi: 10.1364/AO.18.003282.
Fraunhofer diffraction theory was used to obtain the far-field output intensity distributions of various electrooptic waveguide deflectors. The behavior of single prism elements, arrays of identical or phase-staggered prism elements, and arrays of channel waveguide elements is described by the same analytic technique. The optical beam deflection can be continuous or discontinuous. Electrode capacitances are determined. The capabilities of different deflectors are assessed by comparing number of resolvable spots, power, bandwidth, and cross talk. Comparisons are made with experimental data. Simple phase distributions are demonstrated to be useful for determining most deflection parameters, including the power per unit bandwidth.
利用夫琅禾费衍射理论获得了各种电光波导偏转器的远场输出强度分布。采用相同的分析技术描述了单棱镜元件、相同或相位交错棱镜元件阵列以及通道波导元件阵列的行为。光束偏转可以是连续的或不连续的。确定了电极电容。通过比较可分辨光斑数量、功率、带宽和串扰来评估不同偏转器的性能。并与实验数据进行了比较。结果表明,简单的相位分布有助于确定大多数偏转参数,包括单位带宽功率。