Two key areas of emphasis in contemporary experimental exoplanet science are the detailed characterization of transiting terrestrial planets and the search for Earth analog planets to be targeted by future imaging missions. Both of these pursuits are dependent on an order-of-magnitude improvement in the measurement of stellar radial velocities (RV), setting a requirement on single-measurement instrumental uncertainty of order 10 cm/s. Achieving such extraordinary precision on a high-resolution spectrometer requires thermomechanically stabilizing the instrument to unprecedented levels. We describe the environment control system (ECS) of the NEID spectrometer, which will be commissioned on the 3.5-m WIYN Telescope at Kitt Peak National Observ...
The NEID spectrograph on the WIYN 3.5-m telescope at Kitt Peak has completed its first full year of ...
We present here the optical and mechanical design of a fiber-fed High-resolution spectrograph at res...
The Kepler mission highlighted that precision radial velocity (PRV) follow-up is a real bottleneck i...
Two key areas of emphasis in contemporary experimental exoplanet science are the detailed characteri...
NEID is an ultra-stabilized, high-resolution, fiber-fed, spectrometer being built by a multi-institu...
Insufficient instrument thermomechanical stability is one of the many roadblocks for achieving 10 cm...
We present preliminary results for the environmental control system from NEID, our instrument concep...
NEID is a new ultra-precise radial velocity spectrometer for the 3.5m WIYN Telescope at Kitt Peak Na...
Insufficient instrument thermomechanical stability is one of the many roadblocks for achieving 10 cm...
The NEID spectrometer is an optical (380-930 nm), fiber-fed, precision Doppler spectrometer currentl...
The NEID spectrometer is an optical (380-930 nm), fiber-fed, precision Doppler spectrometer currentl...
NEID is a highly stabilized fiber-fed spectrometer for the WIYN 3.5m Telescope at Kitt Peak National...
Efforts with extreme-precision radial velocity (EPRV) instruments to detect small-amplitude planets ...
NEID is a high resolution echelle spectrograph designed to enable extremely precise Doppler radial v...
NEID is an extreme precision radial velocity (EPRV) spectrometer at the WIYN 3.5m Telescope at Kitt ...
The NEID spectrograph on the WIYN 3.5-m telescope at Kitt Peak has completed its first full year of ...
We present here the optical and mechanical design of a fiber-fed High-resolution spectrograph at res...
The Kepler mission highlighted that precision radial velocity (PRV) follow-up is a real bottleneck i...
Two key areas of emphasis in contemporary experimental exoplanet science are the detailed characteri...
NEID is an ultra-stabilized, high-resolution, fiber-fed, spectrometer being built by a multi-institu...
Insufficient instrument thermomechanical stability is one of the many roadblocks for achieving 10 cm...
We present preliminary results for the environmental control system from NEID, our instrument concep...
NEID is a new ultra-precise radial velocity spectrometer for the 3.5m WIYN Telescope at Kitt Peak Na...
Insufficient instrument thermomechanical stability is one of the many roadblocks for achieving 10 cm...
The NEID spectrometer is an optical (380-930 nm), fiber-fed, precision Doppler spectrometer currentl...
The NEID spectrometer is an optical (380-930 nm), fiber-fed, precision Doppler spectrometer currentl...
NEID is a highly stabilized fiber-fed spectrometer for the WIYN 3.5m Telescope at Kitt Peak National...
Efforts with extreme-precision radial velocity (EPRV) instruments to detect small-amplitude planets ...
NEID is a high resolution echelle spectrograph designed to enable extremely precise Doppler radial v...
NEID is an extreme precision radial velocity (EPRV) spectrometer at the WIYN 3.5m Telescope at Kitt ...
The NEID spectrograph on the WIYN 3.5-m telescope at Kitt Peak has completed its first full year of ...
We present here the optical and mechanical design of a fiber-fed High-resolution spectrograph at res...
The Kepler mission highlighted that precision radial velocity (PRV) follow-up is a real bottleneck i...