Calibrating and standardizing the Tip of the Red Giant Branch in the Small Magellanic Cloud using small-amplitude red giants
arXiv:2406.19375 · doi:10.3847/1538-4357/ad7095
Abstract
We investigate the absolute calibration of the Tip of the Red Giant Branch (TRGB) in the Small Magellanic Cloud (SMC) using small amplitude red giant stars (SARGs) classified by the Optical Gravitational Lensing Experiment (OGLE). We show that all stars near the SMC's TRGB are SARGs. Distinguishing older and younger RGs near the Tip according to two period-luminosity sequences labeled A and B, we show many similarities among SARG populations of the LMC and the SMC, along with notable differences. Specifically, SMC SARGs have shorter periods due to lower metallicity and smaller amplitudes due to younger ages than LMC SARGs. We discover two period-color relations near the TRGB that span all A- and B-sequence stars in the OGLE-III footprints of the SMC and LMC, and we investigate using periods instead of color for TRGB standardization. Using variability derived information only, we trace the SMC's age and metallicity gradients and show the core to be populated by younger, more metal rich RGs. The B-sequence yields the brightest and most accurate calibration ( mag), which we use to measure the distance modulus difference between the Clouds and investigate metallicity effects. Distance measurements not informed by variability should employ the SARGs-based calibration based on all stars near the tip ( mag). Our work highlights the impact of RG population diversity on TRGB distance measurements. Further study is needed unravel these effects and improve TRGB standardization.
22 pages, 15 figures, ApJ 974, A181 (2024)
References in corpus (27)
- The Gaia mission
- Gaia Data Release 3: Summary of the content and survey properties
- Gaia Early Data Release 3: The astrometric solution
- Gaia Early Data Release 3: Photometric content and validation
- A distance to the Large Magellanic Cloud that is precise to one per cent
- Measurements of the Hubble Constant: Tensions in Perspective
- APOGEE Data and Spectral Analysis from SDSS Data Release 16: Seven Years of Observations Including First Results from APOGEE-South
- Calibration of the Tip of the Red Giant Branch (TRGB)
- A distance determination to the Small Magellanic Cloud with an accuracy of better than 2 percent based on late-type eclipsing binary stars
- Tip of the Red Giant Branch Distances. I. Optimization of a Maximum Likelihood Algorithm
- OGLE-ing the Magellanic System: Optical Reddening Maps of the Large and Small Magellanic Cloud from Red Clump Stars
- Gaia Data Release 3. Summary of the variability processing and analysis
- Comparing Tip of the Red Giant Branch Distance Scales: An Independent Reduction of the Carnegie-Chicago Hubble Program and the Value of the Hubble Constant
- The Extragalactic Distance Database: The Color-Magnitude Diagrams and Tip of the Red Giant Branch Distances Catalog
- The brightness of the Red Giant Branch tip: Theoretical framework, a set of reference models, and predicted observables
- The pulsation modes, masses and evolution of luminous red giants
- Gaia Data Release 3: The Galaxy in your preferred colours. Synthetic photometry from Gaia low-resolution spectra
- Gaia Data Release 3: The second Gaia catalogue of Long-Period Variable candidates
- Sharpening the Tip of the Red Giant Branch
- An Improved Calibration of the Wavelength Dependence of Metallicity on the Cepheid Leavitt law
- Binarity as the Origin of Long Secondary Periods in Red Giant Stars
- On Zero Point Calibration of the Red Giant Branch Tip in the Magellanic Clouds
- The Optical Gravitational Lensing Experiment. Small Amplitude Variable Red Giants in the Magellanic Clouds
- Quantifying Uncertainties on the Tip of the Red Giant Branch Method
- Comparative Analysis of TRGBs (CATs) from Unsupervised, Multi-Halo-Field Measurements: Contrast is Key
- An Empirical Calibration of the Tip of the Red Giant Branch Distance Method in the Near Infrared. I. HST WFC3/IR F110W and F160W Filters
- Standardized Luminosity of the Tip of the Red Giant Branch utilizing Multiple Fields in NGC 4258 and the CATs Algorithm
Cited by in corpus (5)
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- No rungs attached: A distance-ladder free determination of the Hubble constant through type II supernova spectral modelling
- Tip of the Red Giant Branch Distances with JWST. II. I-band Measurements in a Sample of Hosts of 10 SN Ia Match HST Cepheids
- A Review on Resolving the Hubble Tension via Late-Universe Physics
- Calibrating the Tip of the Red Giant Branch and measuring Magellanic Cloud distances to 2% exclusively with Gaia