astro-ph vom 2019-01-31

Moin,

https://arxiv.org/abs/1901.10476
Physical insights on fractal analysis applied to light curves δ Scuti stars

https://arxiv.org/abs/1901.10479
A Radio Source Coincident with the Superluminous Supernova PTF10hgi: Evidence for a Central Engine and an Analogue of the Repeating FRB121102?

https://arxiv.org/abs/1901.10611
Fundamental properties of the pre-main sequence eclipsing stars of MML 53 and the mass of the tertiary

https://arxiv.org/abs/1901.10642
Theoretical models of the protostellar disks of AS 209 and HL Tau presently forming in-situ planets

https://arxiv.org/abs/1901.10693
PTF 14jg: The Remarkable Outburst and Post-Burst Evolution of a Previously Anonymous Galactic Star

https://arxiv.org/abs/1901.10768
Revealing the Nature and Location of High Energy Emission in the Candidate Binary SMBH System OJ 287

CS
Andreas

https://veraenderlichesterne.wordpress.com
http://www.barchfeld.eu/
PGP-Fingerprint: 1E72 BFA1 0B12 168B 2DE0 9508 116E F5E9 DD86 77B1

astro-ph vom 2019-01-30

Moin,

https://arxiv.org/abs/1901.09959
Coordinated UV and X-ray spectroscopic observations of the O-type giant xi Per: the connection between X-rays and large-scale wind structure

https://arxiv.org/abs/1901.09962
Signatures of Circumstellar Interaction in the Type IIL Supernova ASASSN-15oz

https://arxiv.org/abs/1901.10007
Explosive Nucleosynthesis in Sub-Chandrasekhar mass Type Ia Supernovae: Dependence on Model Parameters

https://arxiv.org/abs/1901.10101
A VLBI study of the wind-wind collision region in the massive multiple HD 167971 (Anm.: HD 167971 = MY Her)

https://arxiv.org/abs/1901.10129
Effect of lensing magnification on type Ia supernova cosmology

CS
Andreas

https://veraenderlichesterne.wordpress.com
http://www.barchfeld.eu/
PGP-Fingerprint: 1E72 BFA1 0B12 168B 2DE0 9508 116E F5E9 DD86 77B1

astro-ph vom 2019-01-29

Moin,

https://arxiv.org/abs/1901.09044
GW170817–the first observed neutron star merger and its kilonova: implications for the astrophysical site of the r-process

https://arxiv.org/abs/1901.09055
Features of Accretion Phase Gravitational Wave Emission from Two-dimensional Rotating Core-Collapse Supernovae

https://arxiv.org/abs/1901.09139
Evidence for bimodal orbital separations of white dwarf-red dwarf binary stars
(Anm.: „… One of our targets, WD\,1504+546, was discovered to be an eclipsing binary with a period of 0.93\,d. „)

https://arxiv.org/abs/1901.09220
Detecting the imprint of a kilonova or supernova \\ in short GRB afterglows

https://arxiv.org/abs/1901.09382
LAXPC / AstroSat Study of ~ 1 and ~ 2 mHz Quasi-periodic Oscillations in the Be/X-ray Binary 4U 0115+63 During its 2015 Outburst

https://arxiv.org/abs/1901.09468
Most white dwarfs with detectable dust discs show infrared variability

CS
Andreas

https://veraenderlichesterne.wordpress.com
http://www.barchfeld.eu/
PGP-Fingerprint: 1E72 BFA1 0B12 168B 2DE0 9508 116E F5E9 DD86 77B1

astro-ph vom 2019-01-28

Moin,

https://arxiv.org/abs/1901.08692
Astrophysics with core-collapse supernova gravitational wave signals in the next generation of gravitational wave detectors

https://arxiv.org/abs/1901.08809
Current problems in stellar pulsation theory

https://arxiv.org/abs/1901.09003
Non-thermal emission resulting from a supernova explosion inside an extragalactic jet

https://arxiv.org/abs/1901.09027
A catalogue of spectroscopic binary candidate stars derived from a comparison of Gaia DR2 with other radial velocity catalogues

CS
Andreas

https://veraenderlichesterne.wordpress.com
http://www.barchfeld.eu/
PGP-Fingerprint: 1E72 BFA1 0B12 168B 2DE0 9508 116E F5E9 DD86 77B1

astro-ph vom 2019-01-24

Moin,

https://arxiv.org/abs/1901.07562
The 3D shape of Type IIb SN 2011hs

https://arxiv.org/abs/1901.07628
Synthetic spectra of energetic core-collapse supernovae and the early spectra of SN 2007bi and SN 1999as

https://arxiv.org/abs/1901.07981
The PDS 110 observing campaign – photometric and spectroscopic observations reveal eclipses are aperiodic

https://arxiv.org/abs/1901.08009
Characterizing Variable Stars in a Single Night with LSST

https://arxiv.org/abs/1901.08020
The distance, rotation, and physical parameters of zeta Pup

CS
Andreas

https://veraenderlichesterne.wordpress.com
http://www.barchfeld.eu/
PGP-Fingerprint: 1E72 BFA1 0B12 168B 2DE0 9508 116E F5E9 DD86 77B1

astro-ph vom 2019-01-23

Moin,

https://arxiv.org/abs/1901.06384
SuperNNova: an open-source framework for Bayesian, Neural Network based supernova classification

https://arxiv.org/abs/1901.06998
TXS 0506+056, the first cosmic neutrino source, is not a BL Lac

https://arxiv.org/abs/1901.07179
SPIRITS Catalog of Infrared Variables: Identification of Extremely Luminous Long Period Variables

https://arxiv.org/abs/1901.07263
Simultaneous Kepler/K2 and XMM-Netwon observations of superflares in the Pleiades

https://arxiv.org/abs/1901.07269
Long-term evolutions of the cyclotron line energies in Her X-1, Vela X-1 and Cen X-3 as observed with Swift/BAT (Anm.: Her X-1 = HZ Her; Vela X-1 = GP Vel; Cen X-3 = V779 Cen)

https://arxiv.org/abs/1901.07281
Full Orbital Solution for the Binary System in the Northern Galactic Disk Microlensing Event Gaia16aye

https://arxiv.org/abs/1901.07511
Classical T-Tauri stars with VPHAS+: II: NGC 6383 in Sh 2-012

CS
Andreas

https://veraenderlichesterne.wordpress.com
http://www.barchfeld.eu/
PGP-Fingerprint: 1E72 BFA1 0B12 168B 2DE0 9508 116E F5E9 DD86 77B1

astro-ph vom 2019-01-22

Moin,

„21 January – Martin Luther King, Jr. Holiday Schedule: The mailings and the public availability of new submissions will be deferred for 21 January 2019. The arXiv servers will otherwise remain in operation. In addition, arXiv staff will provide limited service in response to queries during the holiday.
Articles received at or after 14:00 ET Friday, 18 January 2019 and before 14:00 ET Tuesday, 22 January 2019 will be announced at 20:00 ET Tuesday, 22 January 2019.“

CS
Andreas

https://veraenderlichesterne.wordpress.com
http://www.barchfeld.eu/
PGP-Fingerprint: 1E72 BFA1 0B12 168B 2DE0 9508 116E F5E9 DD86 77B1