activity
20182021
most citedDiffraction-limited integral-field spectroscopy for extreme adaptive optics systems with the Multi-Core fiber-fed Integral-Field Unit

17 citations · 22 across the 2 of their papers we have counts for

collaborators

5 papers

astro-ph.IM20215 cited

An innovative integral field unit upgrade with 3D-printed micro-lenses for the RHEA at Subaru

Theodoros Anagnos, Pascal Maier, Philipp Hottinger +26

In the new era of Extremely Large Telescopes (ELTs) currently under construction, challenging requirements drive spectrograph designs towards techniques that efficiently use a faci…

astro-ph.IM202017 cited

Diffraction-limited integral-field spectroscopy for extreme adaptive optics systems with the Multi-Core fiber-fed Integral-Field Unit

Sebastiaan Y. Haffert, Robert J. Harris, Alessio Zanutta +31

Direct imaging instruments have the spatial resolution to resolve exoplanets from their host star. This enables direct characterization of the exoplanets atmosphere, but most direc…

astro-ph.IM2020

Modal noise mitigation for high-precision spectroscopy using a photonic reformatter

Fraser A. Pike, Aurélien Benoît, David G. MacLachlan +5

Recently, we demonstrated how an astrophotonic light reformatting device, based on a multicore fibre photonic lantern and a three-dimensional waveguide component, can be used to ef…

astro-ph.IM2018

Optimizing astrophotonic spatial reformatters using simulated on-sky performance

Theodoros Anagnos, Robert J. Harris, Mark K. Corrigan +7

One of the most useful techniques in astronomical instrumentation is image slicing. It enables a spectrograph to have a more compact angular slit, whilst retaining throughput and i…

astro-ph.IM2018

Simulation and Optimization of an Astrophotonic Reformatter

Th. Anagnos, R. J. Harris, M. K. Corrigan +7

Image slicing is a powerful technique in astronomy. It allows the instrument designer to reduce the slit width of the spectrograph, increasing spectral resolving power whilst retai…