The Transit Timing and Transmission Spectrum of Hot Jupiter WASP-43 b from a decade of Multi-band Transit Follow-up Observations

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: A-thano, Napaporn, Awiphan, Supachai, Kerins, Eamonn, Priyadarshi, Akshay, McDonald, Iain, Jiang, Ing-Guey, Joshi, Yogesh C., Yang, Fan, Janiak, Ida, Munsaket, Patcharawee, Qadir, Yasir Abdul, Rattanamala, Ronnakrit, Tasuya, Orarik, Boonsoy, Ekburus, Sanguansak, Nuanwan, Rattanasai, Rattiyakorn, Padjaroen, Thammasorn, Komonjinda, Siramas, Pichadee, Sawatkamol, Sudsap, Ananpol, Chandaiam, Smanchan, Choonhakit, Boonyarit, Wutsang, Suwanit, Dhillon, Vik S
Format: Preprint
Published: 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866910109087563776
author A-thano, Napaporn
Awiphan, Supachai
Kerins, Eamonn
Priyadarshi, Akshay
McDonald, Iain
Jiang, Ing-Guey
Joshi, Yogesh C.
Yang, Fan
Janiak, Ida
Munsaket, Patcharawee
Qadir, Yasir Abdul
Rattanamala, Ronnakrit
Tasuya, Orarik
Boonsoy, Ekburus
Sanguansak, Nuanwan
Rattanasai, Rattiyakorn
Padjaroen, Thammasorn
Komonjinda, Siramas
Pichadee, Sawatkamol
Sudsap, Ananpol
Chandaiam, Smanchan
Choonhakit, Boonyarit
Wutsang, Suwanit
Dhillon, Vik S
author_facet A-thano, Napaporn
Awiphan, Supachai
Kerins, Eamonn
Priyadarshi, Akshay
McDonald, Iain
Jiang, Ing-Guey
Joshi, Yogesh C.
Yang, Fan
Janiak, Ida
Munsaket, Patcharawee
Qadir, Yasir Abdul
Rattanamala, Ronnakrit
Tasuya, Orarik
Boonsoy, Ekburus
Sanguansak, Nuanwan
Rattanasai, Rattiyakorn
Padjaroen, Thammasorn
Komonjinda, Siramas
Pichadee, Sawatkamol
Sudsap, Ananpol
Chandaiam, Smanchan
Choonhakit, Boonyarit
Wutsang, Suwanit
Dhillon, Vik S
contents We present a new set of 35 transit light curves of the hot Jupiter WASP-43~b, obtained through the SPEARNET network. These datasets were analyzed together with previously published ground-based observations, as well as space-based data from \emph{TESS}, \emph{HST}, and \emph{JWST}, to refine the planetary parameters of WASP-43~b. A total of 188 mid-transit times, measured with \texttt{TransitFit}, were analyzed for potential timing variations. The transit timing variations do not show any significant evidence of orbital decay. Atmospheric retrievals using \emph{HST}/WFC3 G141 transmission spectra suggest that higher-temperature solutions are associated with higher water abundances. However, when these data are combined with observations from ground-based telescopes, \emph{TESS}, and \emph{JWST}, the increased modeling complexity across the broad wavelength baseline presents significant challenges for atmospheric characterization. These results highlight that high-precision, multi-instrument datasets will be necessary to break existing degeneracies in the atmospheric modeling of this target in the future.
format Preprint
id arxiv_https___arxiv_org_abs_2604_05907
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle The Transit Timing and Transmission Spectrum of Hot Jupiter WASP-43 b from a decade of Multi-band Transit Follow-up Observations
A-thano, Napaporn
Awiphan, Supachai
Kerins, Eamonn
Priyadarshi, Akshay
McDonald, Iain
Jiang, Ing-Guey
Joshi, Yogesh C.
Yang, Fan
Janiak, Ida
Munsaket, Patcharawee
Qadir, Yasir Abdul
Rattanamala, Ronnakrit
Tasuya, Orarik
Boonsoy, Ekburus
Sanguansak, Nuanwan
Rattanasai, Rattiyakorn
Padjaroen, Thammasorn
Komonjinda, Siramas
Pichadee, Sawatkamol
Sudsap, Ananpol
Chandaiam, Smanchan
Choonhakit, Boonyarit
Wutsang, Suwanit
Dhillon, Vik S
Earth and Planetary Astrophysics
We present a new set of 35 transit light curves of the hot Jupiter WASP-43~b, obtained through the SPEARNET network. These datasets were analyzed together with previously published ground-based observations, as well as space-based data from \emph{TESS}, \emph{HST}, and \emph{JWST}, to refine the planetary parameters of WASP-43~b. A total of 188 mid-transit times, measured with \texttt{TransitFit}, were analyzed for potential timing variations. The transit timing variations do not show any significant evidence of orbital decay. Atmospheric retrievals using \emph{HST}/WFC3 G141 transmission spectra suggest that higher-temperature solutions are associated with higher water abundances. However, when these data are combined with observations from ground-based telescopes, \emph{TESS}, and \emph{JWST}, the increased modeling complexity across the broad wavelength baseline presents significant challenges for atmospheric characterization. These results highlight that high-precision, multi-instrument datasets will be necessary to break existing degeneracies in the atmospheric modeling of this target in the future.
title The Transit Timing and Transmission Spectrum of Hot Jupiter WASP-43 b from a decade of Multi-band Transit Follow-up Observations
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2604.05907