Literature DB >> 20588402

Toward a broadband astro-comb: effects of nonlinear spectral broadening in optical fibers.

Guoqing Chang1, Chih-Hao Li, David F Phillips, Ronald L Walsworth, Franz X Kärtner.   

Abstract

We propose and analyze a new approach to generate a broadband astro-comb by spectral broadening of a narrowband astro-comb inside a highly nonlinear optical fiber. Numerical modeling shows that cascaded four-wave-mixing dramatically degrades the input comb's side-mode suppression and causes side-mode amplitude asymmetry. These two detrimental effects can systematically shift the center-of-gravity of astro-comb spectral lines as measured by an astrophysical spectrograph with resolution approximately 100,000; and thus lead to wavelength calibration inaccuracy and instability. Our simulations indicate that this performance penalty, as a result of nonlinear spectral broadening, can be compensated by using a filtering cavity configured for double-pass. As an explicit example, we present a design based on an Yb-fiber source comb (with 1 GHz repetition rate) that is filtered by double-passing through a low finesse cavity (finesse = 208), and subsequent spectrally broadened in a 2-cm, SF6-glass photonic crystal fiber. Spanning more than 300 nm with 16 GHz line spacing, the resulting astro-comb is predicted to provide 1 cm/s (approximately 10 kHz) radial velocity calibration accuracy for an astrophysical spectrograph. Such extreme performance will be necessary for the search for and characterization of Earth-like extra-solar planets, and in direct measurements of the change of the rate of cosmological expansion.

Year:  2010        PMID: 20588402     DOI: 10.1364/OE.18.012736

Source DB:  PubMed          Journal:  Opt Express        ISSN: 1094-4087            Impact factor:   3.894


  1 in total

1.  A spectrograph for exoplanet observations calibrated at the centimetre-per-second level.

Authors:  Tobias Wilken; Gaspare Lo Curto; Rafael A Probst; Tilo Steinmetz; Antonio Manescau; Luca Pasquini; Jonay I González Hernández; Rafael Rebolo; Theodor W Hänsch; Thomas Udem; Ronald Holzwarth
Journal:  Nature       Date:  2012-05-30       Impact factor: 49.962

  1 in total

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