论文标题

使用计算机生成的全息技术合成光谱

Synthesizing Optical Spectra using Computer-Generated Holography Techniques

论文作者

Holland, Connor M., Lu, Yukai, Cheuk, Lawrence W.

论文摘要

原子和分子的实验控制和检测通常依赖于不同电子状态之间的光学转变。在许多情况下,诸如超精细或自旋旋转结构之类的子结构导致需要由MHz扩大到GHz的多个光学频率。当频率的数量变大时,创建多个光学频率的任务(光谱工程)变得具有挑战性,这种情况可能会在大磁场中在复杂的分子和原子中遇到的情况。在这项工作中,我们提出了一种新颖的方法,通过调节单色光场,其通过计算机生成的全息技术生成的时间依赖相。我们的方法与非线性光学过程(例如总和频率产生和第二次谐波生成)兼容。激发状态的有限寿命产生的其他要求也可以在我们的方法中得到满足。作为原则证明,我们生成适用于CAF中X-B过渡上循环光子的光谱,并通过光学Bloch方程模拟验证,即可以达到高光子散射速率,这对于荧光检测和激光冷却很重要。我们的方法可以在未来的实验中提供重大简化,否则这些实验将非常复杂。

Experimental control and detection of atoms and molecules often rely on optical transitions between different electronic states. In many cases, substructure such as hyperfine or spin-rotation structure leads to the need for multiple optical frequencies spaced by MHz to GHz. The task of creating multiple optical frequencies -- optical spectral engineering -- becomes challenging when the number of frequencies becomes large, a situation that one could encounter in complex molecules and atoms in large magnetic fields. In this work, we present a novel method to synthesize arbitrary optical spectra by modulating a monochromatic light field with a time-dependent phase generated through computer-generated holography techniques. Our method is compatible with non-linear optical processes such as sum frequency generation and second harmonic generation. Additional requirements that arise from the finite lifetimes of excited states can also be satisfied in our approach. As a proof-of-principle demonstration, we generate spectra suitable for cycling photons on the X-B transition in CaF, and verify via Optical Bloch Equation simulations that one can achieve high photon scattering rates, which are important for fluorescent detection and laser cooling. Our method could offer significant simplifications in future experiments that would otherwise be prohibitively complex.

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