English

Integrated photonic building blocks for next-generation astronomical instrumentation II: the multimode to single mode transition

Instrumentation and Methods for Astrophysics 2013-11-05 v1 Optics

Abstract

There are numerous advantages to exploiting diffraction-limited instrumentation at astronomical observatories, which include smaller footprints, less mechanical and thermal instabilities and high levels of performance. To realize such instrumentation it is imperative to convert the atmospheric seeing-limited signal that is captured by the telescope into a diffraction-limited signal. This process can be achieved photonically by using a mode reformatting device known as a photonic lantern that performs a multimode to single-mode transition. With the aim of developing an optimized integrated photonic lantern, we undertook a systematic parameter scan of devices fabricated by the femtosecond laser direct-write technique. The devices were designed for operation around 1.55 {\mu}m. The devices showed (coupling and transition) losses of less than 5% for F/# \geq 12 injection and the total device throughput (including substrate absorption) as high as 75-80%. Such devices show great promise for future use in astronomy.

Keywords

Cite

@article{arxiv.1311.0578,
  title  = {Integrated photonic building blocks for next-generation astronomical instrumentation II: the multimode to single mode transition},
  author = {Izabela Spaleniak and Nemanja Jovanovic and Simon Gross and Michael J. Ireland and Jon S. Lawrence and Michael J. Withford},
  journal= {arXiv preprint arXiv:1311.0578},
  year   = {2013}
}

Comments

12 pages, 9 figures