Starlight Demonstration of the Dragonfly Instrument: an Integrated Photonic Pupil Remapping Interferometer for High Contrast Imaging
arXiv:1210.0603 · doi:10.1111/j.1365-2966.2012.21997.x
Abstract
In the two decades since the first extra-solar planet was discovered, the detection and characterization of extra-solar planets has become one of the key endeavors in all of modern science. Recently direct detection techniques such as interferometry or coronography have received growing attention because they reveal the population of exoplanets inaccessible to Doppler or transit techniques, and moreover they allow the faint signal from the planet itself to be investigated. Next-generation stellar interferometers are increasingly incorporating photonic technologies due to the increase in fidelity of the data generated. Here, we report the design, construction and commissioning of a new high contrast imager; the integrated pupil-remapping interferometer; an instrument we expect will find application in the detection of young faint companions in the nearest star-forming regions. The laboratory characterisation of the instrument demonstrated high visibility fringes on all interferometer baselines in addition to stable closure phase signals. We also report the first successful on-sky experiments with the prototype instrument at the 3.9-m Anglo-Australian Telescope. Performance metrics recovered were consistent with ideal device behaviour after accounting for expected levels of decoherence and signal loss from the uncompensated seeing. The prospect of complete Fourier-coverage coupled with the current performance metrics means that this photonically-enhanced instrument is well positioned to contribute to the science of high contrast companions.
10 pages, 7 figures, accepted to Mon. Not. of Roy. Ast. Soc., 2012
References in corpus (4)
- Mapping the Shores of the Brown Dwarf Desert I.: Upper Scorpius
- High dynamic range imaging by pupil single-mode filtering and remapping
- High dynamic range imaging with a single-mode pupil remapping system : a self-calibration algorithm for redundant interferometric arrays
- Mid-infrared laser light nulling experiment using single-mode conductive waveguides
Cited by in corpus (18)
- Low bend loss waveguides enable compact, efficient 3D photonic chips
- First on-sky demonstration of an integrated-photonic nulling-interferometer: The GLINT instrument
- Astrophotonic Spectrographs
- 2023 Astrophotonics Roadmap: pathways to realizing multi-functional integrated astrophotonic instruments
- Ultrafast laser inscription of mid-IR directional couplers for stellar interferometry
- Spectrographs for astrophotonics
- Astrophotonics: astronomy and modern optics
- High-performance 3D waveguide architecture for astronomical pupil-remapping interferometry
- Fabrication tolerant chalcogenide mid-infrared multimode interference coupler design with application for Bracewell nulling interferometry
- Photonic ring resonator filters for astronomical OH suppression
- Low Bend Loss, High Index, Composite Morphology Ultra-fast Laser Written Waveguides for Photonic Integrated Circuits
- Kernel nullers for an arbitrary number of apertures
- Building hybridized 28-baseline pupil-remapping photonic interferometers for future high resolution imaging
- Astronomical Applications of Multi-Core Fiber Technology
- Volcano Architecture for Scalable Quantum Processor Units
- Six-telescope integrated optics beam combiner fabricated using ultrafast laser inscription for J- and H-band astronomy
- Astrophotonics -- current capabilities and the road ahead
- Tri-coupler geometries for achromatic nulling interferometry in the near-infrared