Distinct Rotational Evolution of Giant Planets and Brown Dwarf Companions

Fuente: arXiv
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Main Authors: Hsu, Chih-Chun, Wang, Jason J., Xuan, Jerry W., Zhang, Yapeng, Ruffio, Jean-Baptiste, Mawet, Dimitri, Finnerty, Luke, Horstman, Katelyn, Cronin, Julianne, Xin, Yinzi, Sappey, Ben, Echeverri, Daniel, Jovanovic, Nemanja, Baker, Ashley D., Bartos, Randy, Blake, Geoffrey A., Calvin, Benjamin, Cetre, Sylvain, Delorme, Jacques-Robert, Doppmann, Greg W., Fitzgerald, Michael P., Konopacky, Quinn M., Liberman, Joshua, Lopez, Ronald A., Morris, Evan C., Pezzato, Jacklyn, Schofield, Tobias, Skemer, Andrew, Wallace, James K., Wang, Ji
Format: Preprint
Published: 2026
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author Hsu, Chih-Chun
Wang, Jason J.
Xuan, Jerry W.
Zhang, Yapeng
Ruffio, Jean-Baptiste
Mawet, Dimitri
Finnerty, Luke
Horstman, Katelyn
Cronin, Julianne
Xin, Yinzi
Sappey, Ben
Echeverri, Daniel
Jovanovic, Nemanja
Baker, Ashley D.
Bartos, Randy
Blake, Geoffrey A.
Calvin, Benjamin
Cetre, Sylvain
Delorme, Jacques-Robert
Doppmann, Greg W.
Fitzgerald, Michael P.
Konopacky, Quinn M.
Liberman, Joshua
Lopez, Ronald A.
Morris, Evan C.
Pezzato, Jacklyn
Schofield, Tobias
Skemer, Andrew
Wallace, James K.
Wang, Ji
author_facet Hsu, Chih-Chun
Wang, Jason J.
Xuan, Jerry W.
Zhang, Yapeng
Ruffio, Jean-Baptiste
Mawet, Dimitri
Finnerty, Luke
Horstman, Katelyn
Cronin, Julianne
Xin, Yinzi
Sappey, Ben
Echeverri, Daniel
Jovanovic, Nemanja
Baker, Ashley D.
Bartos, Randy
Blake, Geoffrey A.
Calvin, Benjamin
Cetre, Sylvain
Delorme, Jacques-Robert
Doppmann, Greg W.
Fitzgerald, Michael P.
Konopacky, Quinn M.
Liberman, Joshua
Lopez, Ronald A.
Morris, Evan C.
Pezzato, Jacklyn
Schofield, Tobias
Skemer, Andrew
Wallace, James K.
Wang, Ji
contents We present a rotational velocity (vsini) survey of 32 stellar/substellar objects and giant planets using Keck/KPIC high-resolution spectroscopy, including 6 giant planets (2-7 M$_\mathrm{Jup}$) and 25 substellar/stellar companions (12-88 M$_\mathrm{Jup}$). Adding companions with spin measurements from the literature, we construct a curated spin sample for 43 benchmark stellar/substellar companions and giant planets and 54 free-floating brown dwarfs and planetary mass objects. We compare their spins, parameterized as fractional breakup velocities at 10 Myr, assuming constant angular momentum evolution. We find the first clear evidence that giant planets exhibit distinct spins versus low-mass brown dwarf companions (10 to 40 M$_\mathrm{Jup}$) at 4-4.5 $σ$ significance assuming inclinations aligned with their orbits, while under randomly oriented inclinations the significance is at 1.6-2.1 $σ$. Our findings hold when considering various assumptions about planets, and the mass ratio below 0.8% gives a clean cut for rotation between giant planets and brown dwarf companions. The higher fractional breakup velocities of planets can be interpreted as less angular momentum loss through circumplanetary disk braking during the planet formation phase. Brown dwarf companions exhibit evidence of slower rotation compared to isolated brown dwarfs, while planets and planetary mass objects show similar spins. Finally, our analysis of specific angular momentum versus age of 221 stellar/substellar objects below 0.1 M$_{\odot}$ with spin measurements in the literature indicates that the substellar objects of 5-40 M$_\mathrm{Jup}$ retain much higher angular momenta compared to stellar and substellar objects of 40-100 M$_\mathrm{Jup}$ after 10 Myr, when their initial angular momenta were set.
format Preprint
id arxiv_https___arxiv_org_abs_2601_05976
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Distinct Rotational Evolution of Giant Planets and Brown Dwarf Companions
Hsu, Chih-Chun
Wang, Jason J.
Xuan, Jerry W.
Zhang, Yapeng
Ruffio, Jean-Baptiste
Mawet, Dimitri
Finnerty, Luke
Horstman, Katelyn
Cronin, Julianne
Xin, Yinzi
Sappey, Ben
Echeverri, Daniel
Jovanovic, Nemanja
Baker, Ashley D.
Bartos, Randy
Blake, Geoffrey A.
Calvin, Benjamin
Cetre, Sylvain
Delorme, Jacques-Robert
Doppmann, Greg W.
Fitzgerald, Michael P.
Konopacky, Quinn M.
Liberman, Joshua
Lopez, Ronald A.
Morris, Evan C.
Pezzato, Jacklyn
Schofield, Tobias
Skemer, Andrew
Wallace, James K.
Wang, Ji
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
We present a rotational velocity (vsini) survey of 32 stellar/substellar objects and giant planets using Keck/KPIC high-resolution spectroscopy, including 6 giant planets (2-7 M$_\mathrm{Jup}$) and 25 substellar/stellar companions (12-88 M$_\mathrm{Jup}$). Adding companions with spin measurements from the literature, we construct a curated spin sample for 43 benchmark stellar/substellar companions and giant planets and 54 free-floating brown dwarfs and planetary mass objects. We compare their spins, parameterized as fractional breakup velocities at 10 Myr, assuming constant angular momentum evolution. We find the first clear evidence that giant planets exhibit distinct spins versus low-mass brown dwarf companions (10 to 40 M$_\mathrm{Jup}$) at 4-4.5 $σ$ significance assuming inclinations aligned with their orbits, while under randomly oriented inclinations the significance is at 1.6-2.1 $σ$. Our findings hold when considering various assumptions about planets, and the mass ratio below 0.8% gives a clean cut for rotation between giant planets and brown dwarf companions. The higher fractional breakup velocities of planets can be interpreted as less angular momentum loss through circumplanetary disk braking during the planet formation phase. Brown dwarf companions exhibit evidence of slower rotation compared to isolated brown dwarfs, while planets and planetary mass objects show similar spins. Finally, our analysis of specific angular momentum versus age of 221 stellar/substellar objects below 0.1 M$_{\odot}$ with spin measurements in the literature indicates that the substellar objects of 5-40 M$_\mathrm{Jup}$ retain much higher angular momenta compared to stellar and substellar objects of 40-100 M$_\mathrm{Jup}$ after 10 Myr, when their initial angular momenta were set.
title Distinct Rotational Evolution of Giant Planets and Brown Dwarf Companions
topic Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2601.05976