A comprehensive radial velocity error budget for next generation Doppler spectrometers
arXiv:1607.05634 · doi:10.1117/12.2232761
Abstract
We describe a detailed radial velocity error budget for the NASA-NSF Extreme Precision Doppler Spectrometer instrument concept NEID (NN-explore Exoplanet Investigations with Doppler spectroscopy). Such an instrument performance budget is a necessity for both identifying the variety of noise sources currently limiting Doppler measurements, and estimating the achievable performance of next generation exoplanet hunting Doppler spectrometers. For these instruments, no single source of instrumental error is expected to set the overall measurement floor. Rather, the overall instrumental measurement precision is set by the contribution of many individual error sources. We use a combination of numerical simulations, educated estimates based on published materials, extrapolations of physical models, results from laboratory measurements of spectroscopic subsystems, and informed upper limits for a variety of error sources to identify likely sources of systematic error and construct our global instrument performance error budget. While natively focused on the performance of the NEID instrument, this modular performance budget is immediately adaptable to a number of current and future instruments. Such an approach is an important step in charting a path towards improving Doppler measurement precisions to the levels necessary for discovering Earth-like planets.
20 pages, 12 figures, published in Proc. of SPIE Astronomical Telescopes + Instrumentation 2016
References in corpus (9)
- Barycentric Corrections at 1 cm/s for precise Doppler velocities
- Thermal expansion coefficient of single crystal silicon from 7 K to 293 K
- An improved model of Charge Transfer Inefficiency and correction algorithm for the Hubble Space Telescope
- Characterization of a spurious one-year signal in HARPS data
- A Frequency Comb calibrated Solar Atlas
- Telluric-line subtraction in high-accuracy velocimetry: a PCA-based approach
- Impact of micro-telluric lines on precise radial velocities and its correction
- An efficient, compact, and versatile fiber double scrambler for high precision radial velocity instruments
- 'Modal-noise' in single-mode fibers: A cautionary note for high precision radial velocity instruments
Cited by in corpus (49)
- Kepler Planet Occurrence Rates for Mid-Type M Dwarfs as a Function of Spectral Type
- Python Leap Second Management and Implementation of Precise Barycentric Correction (barycorrpy)
- A Versatile Technique to Enable sub-milli-Kelvin Instrument Stability for Precise Radial Velocity Measurements: Tests with the Habitable-zone Planet Finder
- The Warm Neptune GJ 3470b has a Polar Orbit
- Performance Verification of the EXtreme PREcision Spectrograph
- The CARMENES search for exoplanets around M dwarfs: Radial-velocity variations of active stars in visual-channel spectra
- Insights on the Spectral Signatures of Stellar Activity and Planets from PCA
- Solar System Physics for Exoplanet Research
- Wobble: A Data-driven Analysis Technique for Time-series Stellar Spectra
- Observing the Sun as a star: Design and early results from the NEID solar feed
- TOI-3714 b and TOI-3629 b: Two gas giants transiting M dwarfs confirmed with HPF and NEID
- The TESS Grand Unified Hot Jupiter Survey. II. Twenty New Giant Planets
- Target Prioritization and Observing Strategies for the NEID Earth Twin Survey
- Photometry as a proxy for stellar activity in radial velocity analyses
- Searching for Giant Exoplanets around M-dwarf Stars (GEMS) I: Survey Motivation
- Search for Nearby Earth Analogs. III. Detection of ten new planets, three planet candidates, and confirmation of three planets around eleven nearby M dwarfs
- TOI-3984 A b and TOI-5293 A b: two temperate gas giants transiting mid-M dwarfs in wide binary systems
- The TESS Grand Unified Hot Jupiter Survey. I. Ten TESS Planets
- NEID Rossiter-McLaughlin Measurement of TOI-1268b: A Young Warm Saturn Aligned with Its Cool Host Star
- Evidence for Primordial Alignment: Insights from Stellar Obliquity Measurements for Compact Sub-Saturn Systems
- TOI-1859b: A 64-Day Warm Jupiter on an Eccentric and Misaligned Orbit
- Accounting for Chromatic Atmospheric Effects on Barycentric Corrections
- Stable fiber-illumination for extremely precise radial velocities with NEID
- Fishing for Planets: A Comparative Analysis of EPRV Survey Performance in the Presence of Correlated Noise
- Solar Contamination in Extreme Precision Radial Velocity Measurements: Deleterious Effects and Prospects for Mitigation
- Unsigned magnetic flux proxy from solar optical intensity spectra
- NEID Reveals that The Young Warm Neptune TOI-2076 b Has a Low Obliquity
- Monitoring Telluric Absorption with CAMAL
- The impact of atmospheric dispersion in the performance of high-resolution spectrographs
- The death of Vulcan: NEID reveals the planet candidate orbiting HD 26965 is stellar activity
- Instrument Simulator and Data Reduction Pipeline for the iLocater Spectrograph
- TOI-3785 b: A Low-Density Neptune Orbiting an M2-Dwarf Star
- The unusual M-dwarf Warm Jupiter TOI-1899~b: Refinement of orbital and planetary parameters
- The IAG Solar Flux Atlas: Telluric Correction With a Semi-Empirical Model
- The Measured Impact of Chromatic Atmospheric Effects on Barycentric Corrections: Results from the EXtreme PREcision Spectrograph
- Solar Photospheric Spectrum Microvariability I. Theoretical searches for proxies of radial-velocity jittering
- A Harsh Test of Far-Field Scrambling with the Habitable Zone Planet Finder and the Hobby Eberly Telescope
- Evidence for Primordial Alignment II: Insights from Stellar Obliquity Measurements for Hot Jupiters in Compact Multiplanet Systems
- Developement of a stabilized Fabry-Perot etalon based calibrator for Hanle Echelle Spectrograph (HESP)
- The NEID Earth Twin Survey. II. Dynamical Masses in Seven High-acceleration Star Systems
- Towards 10 cm/s radial velocity accuracy on the Sun using a Fourier transform spectrometer
- Migration and Evolution of giant ExoPlanets (MEEP) II: Super-Jupiters and Lithium-rich Host Stars
- Densified pupil spectrograph as high-precision radial velocimetry: From direct measurement of the Universe's expansion history to characterization of nearby habitable planet candidates
- Searching for Low-Mass Exoplanets Amid Stellar Variability with a Fixed Effects Linear Model of Line-by-Line Shape Changes
- Measurement of the Electric Dipole Moment of AlCl by Stark Level Spectroscopy
- Time-resolved p-mode oscillations for subgiant HD 142091 with NEID at WIYN
- A Low-cost Environmental Control System for Precise Radial Velocity Spectrometers
- Searching for GEMS: Three warm Saturns and a super-Jupiter orbiting four early M-dwarfs
- TOI-3757 b: A low density gas giant orbiting a solar-metallicity M dwarf