English

Harnessing speckle for a sub-femtometre resolved broadband wavemeter and laser stabilization

Instrumentation and Detectors 2017-06-09 v1 Atomic Physics Optics

Abstract

The accurate determination and control of the wavelength of light is fundamental to many fields of science. Speckle patterns resulting from the interference of multiple reflections in disordered media are well-known to scramble the information content of light by complex but linear processes. However, these patterns are, in fact, exceptionally rich in information about the illuminating source. We use a fibre-coupled integrating sphere to generate wavelength-dependent speckle patterns, in combination with algorithms based on the transmission matrix method and principal component analysis, to realize a broadband and sensitive wavemeter. We demonstrate sub-femtometre wavelength resolution at a centre wavelength of 780 nm and a broad calibrated measurement range from 488 to 1064 nm. This is comparable with or exceeding the performance of conventional wavemeters. Using this speckle wavemeter as part of a feedback loop, we stabilize a 780 nm diode laser to achieve a linewidth better than 1 MHz.

Keywords

Cite

@article{arxiv.1706.02378,
  title  = {Harnessing speckle for a sub-femtometre resolved broadband wavemeter and laser stabilization},
  author = {Nikolaus Klaus Metzger and Roman Spesyvtsev and Graham D. Bruce and Bill Miller and Gareth T. Maker and Graeme Malcolm and Michael Mazilu and Kishan Dholakia},
  journal= {arXiv preprint arXiv:1706.02378},
  year   = {2017}
}

Comments

13 pages, 8 figures