Validating the Angular Sizes of Red Clump Stars with Intensity Interferometry
arXiv:2602.02870 · doi:10.1088/1538-3873/ae54cb
Abstract
The surface-brightness-color (SBC) relationship for Red Clump stars provides a critical foundation for precision distance ladder measurements, including the 1\% distance determination to the Large Magellanic Cloud. Current SBC calibrations rely on angular diameter measurements of nearby Red Clump stars obtained through long-baseline optical interferometry using the Very Large Telescope Interferometer. We explore the application of intensity interferometry to measure limb-darkened angular diameters of Red Clump stars, offering a complementary approach to traditional amplitude interferometry. We describe the framework for extracting angular diameters from squared visibility measurements in intensity interferometry, accounting for limb darkening through the stellar atmosphere models. For the Red Clump star HD~17652, we show that intensity interferometry in the band at baselines matching PIONIER (100~m) could achieve \% angular size uncertainties in 2-hour exposures by measuring the primary peak of the visibility function, enabling direct comparison with existing measurements. Critically, observations at shorter wavelengths probe the secondary visibility maximum, providing independent checks of both measurement and systematic errors that are largely insensitive to limb-darkening assumptions. Exploiting the multiplex advantage of simultaneous multi-bandpass observations and the large number of baselines available with telescope arrays such as the Cherenkov Telescope Array Observatory can reduce observing times to practical levels, making intensity interferometry a viable tool for validating the angular sizes for a subset of the Red Clump star calibration sample.
13 pages, 3 figures
References in corpus (29)
- The Gaia mission
- Gaia Data Release 3: Summary of the content and survey properties
- A new extensive library of PHOENIX stellar atmospheres and synthetic spectra
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- A distance to the Large Magellanic Cloud that is precise to one per cent
- First Results from the CHARA Array. II. A Description of the Instrument
- PIONIER: a 4-telescope visitor instrument at VLTI
- Tests of stellar model atmospheres by optical interferometry: VLTI/VINCI limb-darkening measurements of the M4 giant psi phe
- A new LMC K-band distance from precision measurements of nearby red clump stars
- On the Limb Darkening, Spectral Energy Distribution, and Temperature Structure of Procyon
- ATLAS vs. NextGen model atmospheres: a combined analysis of synthetic spectral energy distributions
- Spherically-symmetric model stellar atmospheres and limb darkening I: limb-darkening laws, gravity-darkening coefficients and angular diameter corrections for red giant stars
- The Near-Infrared Tip of the Red Giant Branch. II. An Absolute Calibration in the Large Magellanic Cloud
- Optical intensity interferometry observations using the MAGIC imaging atmospheric Cherenkov telescopes
- The late type eclipsing binaries in the Large Magellanic Cloud: catalogue of fundamental physical parameters
- High angular resolution imaging with stellar intensity interferometry using air Cherenkov telescope arrays
- The araucaria project. An accurate distance to the late-type double-lined eclipsing binary ogle smc113.3 4007 in the small magellanic cloud
- Fundamental properties of red-clump stars from long-baseline H-band interferometry
- Performance and first measurements of the MAGIC Stellar Intensity Interferometer
- First Intensity Interferometry Measurements with the H.E.S.S. Telescopes
- Towards reliable uncertainties in IR interferometry: The bootstrap for correlated statistical & systematic errors
- Intensity interferometry: Optical imaging with kilometer baselines
- Stellar intensity interferometry of Vega in photon counting mode
- Power-2 limb-darkening coefficients for the , , SDSS , Gaia, Kepler, TESS, and CHEOPS photometric systems II. PHOENIX spherically symmetric stellar atmosphere models
- Intensity Interferometry observations of the H envelope of Cas with MéO and a portable telescope
- Simultaneous Two Colour Intensity Interferometry with H.E.S.S
- Probing and resolving AGN disks with ultrafast photon counters
- Intensity Interferometry at Calern and beyond: progress report
- Performance of MAGIC stellar intensity interferometer and expansion to MAGIC + CTAO-LST1 stellar intensity interferometer