An absolute mass, precise age, and hints of planetary winds for WASP-121 A and b from a JWST NIRSpec phase curve
David K. Sing (1,2), Thomas M. Evans-Soma (3,4), Zafar Rustamkulov, (1), Joshua D. Lothringer (5), Nathan J. Mayne (6), and Kevin C. Schlaufman, (2) ((1) Department of Earth & Planetary Sciences, Johns Hopkins University,, (2) Department of Physics & Astronomy

TL;DR
This study uses JWST NIRSpec phase curve data to precisely measure the mass, age, and atmospheric dynamics of the ultra-hot Jupiter WASP-121b, revealing detailed planetary properties and wind patterns.
Contribution
It provides the first dynamical mass measurements of WASP-121A and b with high precision, independent of stellar models, and offers insights into planetary winds and rotation from phase curve data.
Findings
Planetary velocity amplitude measured as 215.7 km/s
System age determined to be 1.11 Gyr
Detected velocity differences suggest atmospheric winds and rotation effects
Abstract
We have conducted a planetary radial velocity measurement of the ultra-hot Jupiter WASP-121b using JWST NIRSpec phase curve data. Our analysis reveals the Doppler shift of the planetary spectral lines across the full orbit, which shifts considerably across the detector ( 10 pixels). Using cross-correlation techniques, we have determined an overall planetary velocity amplitude of km/s, which is in good agreement with the expected value. We have also calculated the dynamical mass for both components of the system by treating it as an eclipsing double-line spectroscopic binary, with WASP-121A having a mass of M=1.330 0.019 M, while WASP-121b has a mass of M= 1.170 0.043 M. These dynamical measurements are more precise than previous estimates and do not rely on any stellar modeling assumptions…
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