Lee Sang-Hyuk, Grier David
Opt Express. 2005 Sep 19;13(19):7458-65. doi: 10.1364/opex.13.007458.
Complex three-dimensional patterns of multifunctional optical traps can be encoded in phase-only computer-generated holograms and projected with the holographic optical trapping technique. The trap-forming holograms, in turn, are implemented as diffractive optical elements whose phase transfer functions generally do not faithfully reproduce the design. We demonstrate that phase encoding errors reduce the overall intensities of the projected traps but, remarkably, do not affect their positions, relative intensities or mode structure. We exploit this robust performance to implement dual-color holographic optical tweezers with a single hologram.
多功能光阱的复杂三维图案可以编码在纯相位计算机生成的全息图中,并通过全息光镊技术进行投影。反过来,形成光阱的全息图被实现为衍射光学元件,其相位传递函数通常不能如实地再现设计。我们证明,相位编码误差会降低投影光阱的整体强度,但值得注意的是,不会影响它们的位置、相对强度或模式结构。我们利用这种稳健的性能,用单个全息图实现双色全息光镊。