On-sky results for the novel integrated micro-lens ring tip-tilt sensor
arXiv:2106.10152 · doi:10.1364/JOSAB.421459
Abstract
We present the first on-sky results of the micro-lens ring tip-tilt (MLR-TT) sensor. This sensor utilizes a 3D printed micro-lens ring feeding six multi-mode fibers to sense misaligned light, allowing centroid reconstruction. A tip-tilt mirror allows the beam to be corrected, increasing the amount of light coupled into a centrally positioned single-mode (science) fiber. The sensor was tested with the iLocater acquisition camera at the Large Binocular Telescope in November 2019. The limit on the maximum achieved root mean square reconstruction accuracy was found to be 0.19 /D in both tip and tilt, of which approximately 50% of the power originates at frequencies below 10 Hz. We show the reconstruction accuracy is highly dependent on the estimated Strehl ratio and simulations support the assumption that residual adaptive optics aberrations are the main limit to the reconstruction accuracy. We conclude that this sensor is ideally suited to remove post-adaptive optics non-common path tip tilt residuals. We discuss the next steps for the concept development, including optimizations of the lens and fiber, tuning of the correction algorithm and selection of optimal science cases.
Accepted for publication in Journal of the Optical Society of America B (JOSA B)
References in corpus (11)
- Array Programming with NumPy
- The Gemini Planet Imager: First Light
- Large Binocular Telescope Adaptive Optics System: New achievements and perspectives in adaptive optics
- iLocater: A Diffraction-limited Doppler Spectrometer for the Large Binocular Telescope
- On-sky single-mode fiber coupling measurements at the Large Binocular Telescope
- Modal noise in an integrated photonic lantern fed diffraction-limited spectrograph
- Final Design and On-Sky Testing of the iLocater SX Acquisition Camera: Broadband Single-Mode Fiber Coupling
- Diffraction-limited integral-field spectroscopy for extreme adaptive optics systems with the Multi-Core fiber-fed Integral-Field Unit
- Characterization of Single-Mode Fiber Coupling at the Large Binocular Telescope
- The metrology system of the VLTI instrument GRAVITY
- Focal Plane Tip-Tilt Sensing for Improved Single-Mode Fiber Coupling using a 3D-printed Microlens-Ring