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Related papers: Rotation periods for very low mass stars in Praese…

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The cluster Praesepe (age 650 Myr) is an ideal laboratory to study stellar evolution. Specifically, it allows us to trace the long-term decline of rotation and activity on the main-sequence. Here we present rotation periods measured for…

Astrophysics · Physics 2009-11-13 Alexander Scholz , Jochen Eisloeffel

Stellar rotation periods measured from single-age populations are critical for investigating how stellar angular momentum content evolves over time, how that evolution depends on mass, and how rotation influences the stellar dynamo and the…

We present the results of a photometric monitoring campaign for very low mass (VLM) members of the Pleiades. Periodic photometric variability was detected for nine VLM stars with masses between 0.08 and 0.25 MS. These variations are most…

Astrophysics · Physics 2007-05-23 Alexander Scholz , Jochen Eisloeffel

Major photometric monitoring campaigns of star-forming regions in the past decade have provided rich rotation period distributions of pre-main-sequence stars. The rotation periods span more than an order of magnitude in period, with most…

Astrophysics · Physics 2007-05-23 Robert D. Mathieu

Solar-like stars (M < 1.3 Msun) lose angular momentum through their magnetized winds. The resulting evolution of the surface rotation period, which can be directly measured photometrically, has the potential to provide an accurate indicator…

Solar and Stellar Astrophysics · Physics 2020-04-29 F. Spada , A. C. Lanzafame

We analyze {\it K2} light curves for 794 low-mass ($1 > M_* > 0.1$ $M_{\odot}$) members of the $\approx$650-Myr-old open cluster Praesepe, and measure rotation periods ($P_{rot}$) for 677 of these stars. We find that half of the rapidly…

Solar and Stellar Astrophysics · Physics 2017-06-28 Stephanie T. Douglas , Marcel A. Agüeros , Kevin R. Covey , Adam L. Kraus

We have Fourier analyzed 941 K2 light curves of likely members of Praesepe, measuring periods for 86% and increasing the number of rotation periods (P) by nearly a factor of four. The distribution of P vs. (V-K), a mass proxy, has three…

Solar and Stellar Astrophysics · Physics 2017-04-26 L. M. Rebull , J. R. Stauffer , L. A. Hillenbrand , A. M. Cody , J. Bouvier , D. R. Soderblom , M. Pinsonneault , L. Hebb

We present the results of photometric surveys for stellar rotation in the Hyades and in Praesepe, using data obtained as part of the SuperWASP exoplanetary transit-search programme.We determined accurate rotation periods for more than 120…

Solar and Stellar Astrophysics · Physics 2015-05-20 P. Delorme , A. Collier Cameron , L. Hebb , J. Rostron , T. A. Lister , A. J. Norton , D. Pollacco , R. G. West

We present the combined results of three photometric monitoring campaigns targeting very low mass (VLM) stars and brown dwarfs in the young open cluster IC4665 (age ~40 Myr). In all three runs, we observe ~100 cluster members, allowing us…

Solar and Stellar Astrophysics · Physics 2015-05-14 Alexander Scholz , Jochen Eisloeffel , Reinhard Mundt

By using the dense coverage of the extrasolar planet survey project HATNet, we Fourier analyze 381 high-probability members of the nearby open cluster Praesepe (Beehive/M44/NGC 2632). In addition to the detection of 10 variables (of \delta…

M dwarfs remain active over longer timescales than their Sunlike counterparts, with potentially devastating implications for the atmospheres of their planets. However, the age at which fully-convective M dwarfs transition from active and…

Solar and Stellar Astrophysics · Physics 2022-09-14 Emily K. Pass , David Charbonneau , Jonathan M. Irwin , Jennifer G. Winters

In recent years, ground- and space-based photometric surveys have characterized the rotational evolution of solar-like stars to an unprecedented level of detail. In this work we focus on the slow-rotator sequence, an emergent feature…

Solar and Stellar Astrophysics · Physics 2026-02-18 F. Spada , A. C. Lanzafame

We explore the rotation and activity of very low mass (VLM) objects by means of a photometric variability study. Our targets in the vicinity of Epsilon Ori belong to the OriOB1b population in the Orion star-forming complex. In this region…

Astrophysics · Physics 2009-11-10 Alexander Scholz , Jochen Eisloeffel

We aim at constraining the angular momentum evolution of low mass stars by measuring their rotation rates when they begin to evolve freely towards the ZAMS, i.e. after the disk accretion phase has stopped. We conducted a multi-site…

Solar and Stellar Astrophysics · Physics 2015-06-16 E. Moraux , S. Artemenko , J. Bouvier , J. Irwin , M. Ibrahimov , T. Magakian , K. Grankin , E. Nikogossian , C. Cardoso , S. Hodgkin , S. Aigrain , T. A. Movsessian

Rotational studies at a variety of ages and masses are important for constraining the angular momentum evolution of young stellar objects (YSO). Of particular interest are the very low mass (VLM) stars and brown dwarfs (BDs), because of the…

Solar and Stellar Astrophysics · Physics 2015-05-13 Maria Victoria Rodriguez-Ledesma , Reinhard Mundt , Jochen Eislöffel

The regulation of angular momentum is one of the key processes for our understanding of stellar evolution. The rotational evolution of solar-mass stars is mainly determined by the magnetic interaction with their circumstellar disk and…

Astrophysics · Physics 2007-05-23 Jochen Eisloeffel , Alexander Scholz

We develop new angular momentum evolution models for stars with masses of $0.5$ to $1.6~\rm M_\odot$ and from the pre-main-sequence (\rm PMS) through the end of their main-sequence (\rm MS) lifetime. The parametric models include magnetic…

Solar and Stellar Astrophysics · Physics 2017-09-12 Leila Sadeghi Ardestani , Tristan Guillot , Pierre Morel

Low-mass (< 1.2 Solar mass) main-sequence stars lose angular momentum over time, leading to a decrease in their magnetic activity. The details of this rotation-activity relation remain poorly understood. Using observations of members of the…

Solar and Stellar Astrophysics · Physics 2024-02-05 Alejandro Núñez , M. A. Agüeros , J. L. Curtis , K. R. Covey , S. T. Douglas , S. R. Chu , S. DeLaurentiis , M. Wang , J. J. Drake

We critically examine the constraints on internal angular momentum transport which can be inferred from the spin down of open cluster stars. The rotation distribution inferred from rotation velocities and periods are consistent for larger…

Solar and Stellar Astrophysics · Physics 2014-11-20 Pavel A. Denissenkov , Marc Pinsonneault , Donald M. Terndrup , Grant Newsham

Rotation periods from Kepler K2 are combined with projected rotation velocities from the WIYN 3.5-m telescope, to determine projected radii for fast-rotating, low-mass ($0.15 \leq M/M_{\odot} \leq 0.6$) members of the Praesepe cluster. A…

Solar and Stellar Astrophysics · Physics 2018-12-19 R. J. Jackson , R. D. Jeffries , Constantine P. Deliyannis , Qinghui Sun , Stephanie T. Douglas
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