10 research outputs found
SN 2008inâBridging the Gap between Normal and Faint Supernovae of Type IIP
- Author
- Akerlof Carl W.
- Benetti Stefano
- Brown Peter J.
- Bufano Filomena
- Elias-Rosa Nancy
- Fatkhullin Timur A.
- Immler Stefan
- Kumar Brajesh
- Kumar Brijesh
- Maund Justyn
- Misra Kuntal
- Moskvitin Alexander S.
- Pandey S. B.
- Pastorello Andrea
- Quimby Robert M.
- Roming Peter W. A.
- Roy Rupak
- Sagar Ram
- Sokolov Vladimir V.
- Wheeler J. Craig
- Yuan Fang
- Publication venue
- 'American Astronomical Society'
- Publication date
- 13/06/2011
- Field of study
We present optical photometric and low-resolution spectroscopic observations of the Type II plateau supernova (SN) 2008in, which occurred in the outskirts of the nearly face-on spiral galaxy M61. Photometric data in the X-ray, ultraviolet, and near-infrared bands have been used to characterize this event. The SN field was imaged with the ROTSE-IIIb optical telescope about seven days before the explosion. This allowed us to constrain the epoch of the shock breakout to JD = 2454825.6. The duration of the plateau phase, as derived from the photometric monitoring, was ~98 days. The spectra of SN 2008in show a striking resemblance to those of the archetypal low-luminosity IIP SNe 1997D and 1999br. A comparison of ejecta kinematics of SN 2008in with the hydrodynamical simulations of Type IIP SNe by Dessart et al. indicates that it is a less energetic event (~5 Ă 10^(50) erg). However, the light curve indicates that the production of radioactive ^(56)Ni is significantly higher than that in the low-luminosity SNe. Adopting an interstellar absorption along the SN direction of AV ~ 0.3 mag and a distance of 13.2 Mpc, we estimated a synthesized ^(56)Ni mass of ~0.015 M_â. Employing semi-analytical formulae derived by Litvinova and Nadezhin, we derived a pre-SN radius of ~126 R_â, an explosion energy of ~5.4 Ă 10^(50) erg, and a total ejected mass of ~16.7 M_â. The latter indicates that the zero-age main-sequence mass of the progenitor did not exceed 20 M_â. Considering the above properties of SN 2008in and its occurrence in a region of sub-solar metallicity ([O/H] ~ 8.44 dex), it is unlikely that fall-back of the ejecta onto a newly formed black hole occurred in SN 2008in. We therefore favor a low-energy explosion scenario of a relatively compact, moderate-mass progenitor star that generates a neutron star
SN 2008gz - most likely a normal type IIP event
- Author
- Alard
- Alexander S. Moskvitin
- Anderson
- Anderson
- Andrews
- Arnett
- Arnett
- Asplund
- Barbon
- Baron
- Benetti
- Benetti
- Bessell
- Brajesh Kumar
- Branch
- Branch
- Brijesh Kumar
- Cappellaro
- Cappellaro
- Cardelli
- Chakraborty
- Chevalier
- Chugai
- Danziger
- Dessart
- Elmhamdi
- Elmhamdi
- Elmhamdi
- Filippenko
- Filomena Bufano
- Gupta
- Gurugubelli
- H. C. Chandola
- Habergham
- Hakobyan
- Hamuy
- Hamuy
- Hamuy
- Hanuschik
- Harutyunyan
- Heger
- Hendry
- Horne
- Höflich
- James
- Kelly
- Kumar
- Kuntal Misra
- Landolt
- Leonard
- Li
- Litvinova
- Lucy
- Matheson
- Misra
- Moskvitin
- Nadyozhin
- Nakano
- Olivares
- Pastorello
- Pastorello
- Pastorello
- Pilyugin
- Popov
- Poznanski
- Ralph Martin
- Ram Sagar
- Richmond
- Rupak Roy
- S. B. Pandey
- Sahu
- Schlegel
- Smartt
- Smartt
- Smith
- Sonbas
- Spyromilio
- Stefano Benetti
- Stetson
- Stetson
- Suntzeff
- Suntzeff
- Taubenberger
- Terry
- Timur A. Fatkhullin
- Turatto
- Turatto
- Turatto
- Utrobin
- Utrobin
- van Dokkum
- Vladimir V. Sokolov
- Vollmann
- Publication venue
- 'Wiley'
- Publication date
- 06/02/2011
- Field of study
We present BV RI photometric and low-resolution spectroscopic investigation
of a type II core-collapse supernova (SN) 2008gz, which occurred in a star
forming arm and within a half-light radius (solar metallicity region) of a
nearby spiral galaxy NGC 3672. The SN event was detected late and a detailed
investigation of its light curves and spectra spanning 200 days suggest that it
is an event of type IIP similar to archetypal SNe 2004et and 1999em. However,
in contrast to other events of its class, the SN 2008gz exhibits rarely
observed V magnitude drop of 1.5 over the period of a month during plateau to
nebular phase. Using 0.21 mag of Av as a lower limit and a distance of 25.5
Mpc, we estimate synthesized 56Ni mass of 0.05 \pm 0.01 M* and a
mid-plateau Mv of -16.6 \pm 0.2 mag. The photospheric velocity is observed to
be higher than that was observed for SN 2004et at similar epochs, indicating
explosion energy was comparable to or higher than SN 2004et. Similar trend was
also seen for the expansion velocity of H-envelopes. By comparing its
properties with other well studied events as well as by using a recent
simulation of pre-SN models of Dessart, Livne & Waldman (2010), we infer an
explosion energy range of 2 - 3 x 1051 erg and this coupled with the
observed width of the forbidden [O I] 6300-6364 {\AA} line at 275 days after
the explosion gives an upper limit for the main-sequence (non-rotating, solar
metallicity) progenitor mass of 17 M*. Our narrow-band H{\alpha} observation,
taken nearly 560 days after the explosion and the presence of an emission kink
at zero velocity in the Doppler corrected spectra of SN indicate that the event
took place in a low luminosity star forming H II region.Comment: Accepted for publication in MNRA
Multi-messenger observations of a binary neutron star merger
- Author
- Aab A
- Aartsen MG
- Abbott BP
- Abbott R
- Abbott TD
- Abbott TMC
- Abdalla H
- Abe F
- Abeysekara AU
- Abramo LR
- Abramowski A
- Abreu P
- Acernese F
- Acero F
- Ackermann M
- Ackley K
- Ackley K
- Adams C
- Adams J
- Adams SM
- Adams T
- Addesso P
- Adhikari RX
- Adya VB
- Affeldt C
- Afrough M
- Agarwal B
- Agathos M
- Agatsuma K
- Aggarwal N
- Aglietta M
- Agliozzo C
- Agudo I
- Aguiar OD
- Aguilar JA
- Aharonian F
- Ahlers M
- Ahrens M
- Aiello L
- Ain A
- Ajith P
- Akras S
- Al Samarai I
- Albert A
- Albert A
- Albuquerque IFM
- Albury JM
- Alcaniz JS
- Alexander KD
- Alfaro R
- Alighieri S Di Serego
- Allam S
- Allekotte I
- Allen B
- Allen G
- Allison J
- Allison JR
- Allocca A
- Almela A
- Altin PA
- Altmann D
- Alvarez C
- Alvarez JD
- Alvarez M Dovale
- Alvarez-Muiz J
- Amati L
- Amato A
- An T
- Ananyeva A
- Anastasi GA
- Anchordoqui L
- Andeen K
- Anderson JP
- Anderson SB
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- Angus CR
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- Arceo R
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- Areeda JS
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- Arnaud N
- Array LWA Long Wavelength
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- Arteaga-Velzquez JC
- Artola R
- Arun KG
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- Wayth R
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- Westphal T
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- Wiedenski M
- Wiencke L
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- Wood TR
- Woolsey E
- Worden J
- Woschnagg K
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- Wysocki DM
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- Yamada S
- Yamaguchi MS
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- Yanez JP
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- Zadrozny A
- Zaharijas G
- Zaltzman M
- Zanin R
- Zanolin M
- Zaremba M
- Zarnecki AF
- Zas E
- Zavrtanik D
- Zavrtanik M
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- Zhang Y-H
- Zhang YF
- Zhang YJ
- Zhang Z
- Zhang ZL
- Zhao C
- Zhao HS
- Zhao JL
- Zhao W
- Zhao XF
- Zheng SJ
- Zhou H
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- Zhou M
- Zhou Z
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- Zhu XJ
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- Zhu YX
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- Ziegler A
- Zimmerman AB
- Zimmermann B
- Zimnukhov DS
- Ziolkowski M
- Zoll M
- Zong Z
- Zorn J
- Zornoza JD
- Zou CL
- Zuccarello F
- Zucker ME
- Zuniga J
- Zweizig J
- Zywucka N
- Publication venue
- 'American Astronomical Society'
- Publication date
- 01/01/2017
- Field of study
On 2017 August 17 a binary neutron star coalescence candidate (later designated GW170817) with merger time 12:41:04 UTC was observed through gravitational waves by the Advanced LIGO and Advanced Virgo detectors. The Fermi Gamma-ray Burst Monitor independently detected a gamma-ray burst (GRB 170817A) with a time delay of ~1.7 s with respect to the merger time. From the gravitational-wave signal, the source was initially localized to a sky region of 31 deg2 at a luminosity distance of 40+8-8 Mpc and with component masses consistent with neutron stars. The component masses were later measured to be in the range 0.86 to 2.26 Mo. An extensive observing campaign was launched across the electromagnetic spectrum leading to the discovery of a bright optical transient (SSS17a, now with the IAU identification of AT 2017gfo) in NGC 4993 (at ~40 Mpc) less than 11 hours after the merger by the One- Meter, Two Hemisphere (1M2H) team using the 1 m Swope Telescope. The optical transient was independently detected by multiple teams within an hour. Subsequent observations targeted the object and its environment. Early ultraviolet observations revealed a blue transient that faded within 48 hours. Optical and infrared observations showed a redward evolution over ~10 days. Following early non-detections, X-ray and radio emission were discovered at the transientâs position ~9 and ~16 days, respectively, after the merger. Both the X-ray and radio emission likely arise from a physical process that is distinct from the one that generates the UV/optical/near-infrared emission. No ultra-high-energy gamma-rays and no neutrino candidates consistent with the source were found in follow-up searches. These observations support the hypothesis that GW170817 was produced by the merger of two neutron stars in NGC4993 followed by a short gamma-ray burst (GRB 170817A) and a kilonova/macronova powered by the radioactive decay of r-process nuclei synthesized in the ejecta
Obtaining Alumina from Kaolin Clay via Aluminum Chloride
- Author
- Publication venue
- 'MDPI AG'
- Publication date
- Field of study
Results from the worldwide coma morphology campaign for comet ISON (C/2012 S1)
- Author
- Aleksandra V. Ivanova
- Alexander S. Moskvitin
- Beatrice E.A. Mueller
- Belton
- Betty P.S. Lau
- Bockelée-Morvan
- Boehnhardt
- Brandon Doyle
- Brian D. Ottum
- Burns
- Carl Hergenrother
- Chris Pruzenski
- Cihan T. Tezcan
- Colin Snodgrass
- Combi
- David C. Vogel
- David G. Schleicher
- David Trowbridge
- Dennis Whitmer
- Edward Gomez
- Ernesto Guido
- Farnham
- Farnham
- Farnham
- Farnham
- FerrĂn
- Firoza Sutaria
- Frank Dimino
- Hadamcik
- Harris
- Hines
- Howes
- Jayant Murthy
- Jean-Baptist Kikwaya Eluo
- Jehin
- Jim Wyrosdick
- Joel Schmid
- John Briol
- John Caruso
- Joseph H. Jones
- José Luis Martin
- Knight
- Knight
- Knight
- Knight
- Lamy
- Leo Kellett
- Li
- Li
- Man-To Hui
- Margarita Safonova
- Martino Nicolini
- Matthew M. Knight
- Meech
- Meech
- Mike Holloway
- Mueller
- Nalin H. Samarasinha
- Nick Howes
- Nikolai Kiselev
- Noah Brosch
- Onur Yorukoglu
- Quan-Zhi Ye
- Roy Prouty
- Samarasinha
- Samarasinha
- Samuel R. Thomas
- Schleicher
- Stephanie Carlino
- Susan Hoban
- Thomas G. Kaye
- Tim Lister
- Tony L. Farnham
- Tozzi
- Tozzi
- Tricarico
- Tyler B. Penland
- Valerie Rapson
- Vasundhara
- Xing Gao
- Zhong-Yi Lin
- Zubko
- Publication venue
- 'Elsevier BV'
- Publication date
- 24/11/2015
- Field of study
We present the results of a global coma morphology campaign for comet C/2012 S1 (ISON), which was organized to involve both professional and amateur observers. In response to the campaign, many hundreds of images, from nearly two dozen groups were collected. Images were taken primarily in the continuum, which help to characterize the behavior of dust in the coma of comet ISON. The campaign received images from January 12 through November 22, 2013 (an interval over which the heliocentric distance decreased from 5.1 AU to 0.35 AU), allowing monitoring of the long-term evolution of coma morphology during comet ISONŚłs pre-perihelion leg. Data were contributed by observers spread around the world, resulting in particularly good temporal coverage during November when comet ISON was brightest but its visibility was limited from any one location due to the small solar elongation. We analyze the northwestern sunward continuum coma feature observed in comet ISON during the first half of 2013, finding that it was likely present from at least February through May and did not show variations on diurnal time scales. From these images we constrain the grain velocities to ~10 m sâ1, and we find that the grains spent 2â4 weeks in the sunward side prior to merging with the dust tail. We present a rationale for the lack of continuum coma features from September until mid-November 2013, determining that if the feature from the first half of 2013 was present, it was likely too small to be clearly detected. We also analyze the continuum coma morphology observed subsequent to the November 12 outburst, and constrain the first appearance of new features in the continuum to later than November 13.99 UT
Evaluating the Bulk Lorentz Factors of Outflow Material: Lessons Learned from the Extremely Energetic Outburst GRB 160625B
- Author
- Ackermann M.
- Ackermann M.
- Alexander K. D.
- Baring M. G.
- Batsch T.
- Bikmaev I.
- Bloom J. S.
- Burns E.
- Cobb B. E.
- Da-Ming Wei
- Dirirsa F.
- DâElia V.
- Fan Y. Z.
- Fan Y.-Z.
- Fan Y.-Z.
- Fenimore E. E.
- Frail D. A.
- Goldstein A.
- Gorbovskoy E.
- Guidorzi C.
- Hao Wang
- Hao-Ning He
- Karpov S.
- Kobayashi S.
- Kuroda D.
- Liang E.-W.
- Liang W.-W.
- Lithwick Y.
- LĂŒ J.
- Mazaeva E.
- Mazaeva E.
- Mazaeva E.
- Melandri A.
- Mooley K. P.
- Moskvitin A.
- Neng-Hui Liao
- Oates S. R.
- Peâer A.
- Peâer A.
- Pozanenko A.
- Ryde F.
- Shuai Zhang
- Svinkin D.
- Tang Q.-W.
- Troja E.
- Valeev A. F.
- Watson A. M.
- Wright E. L.
- Xu D.
- Yamaoka K.
- Yi-Zhong Fan
- Yuan-Zhu Wang
- Yun-Feng Liang
- Zhang B.
- Zhi-Ping Jin
- Zou Y. C.
- Publication venue
- 'American Astronomical Society'
- Publication date
- Field of study
Multi-messenger Observations of a Binary Neutron Star Merger
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- Aar G.Van
- Aartsen M.G.
- Abbott B.P.
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- Abbott T.D.
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- Abramowski A.
- Abreu P.
- Acernese F.
- Acero F.
- Ackermann M.
- Ackley K.
- Ackley K.
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- Adams S.M.
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- Addesso P.
- Adhikari R.X.
- Adya V.B.
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- Agarwal B.
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- Aguilar J.A.
- Aharonian F.
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- Ajith P.
- Akras S.
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- Albert A.
- Albuquerque I.F.M.
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- Alcaniz J.S.
- Alexander K.D.
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- Allam S.
- Allekotte I.
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- Altmann D.
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- ƻarnecki A.F.
- ƻywucka N.
- Publication venue
- 'American Astronomical Society'
- Publication date
- 01/01/2017
- Field of study
International audienceOn 2017 August 17 a binary neutron star coalescence candidate (later designated GW170817) with merger time 12:41:04 UTC was observed through gravitational waves by the Advanced LIGO and Advanced Virgo detectors. The Fermi Gamma-ray Burst Monitor independently detected a gamma-ray burst (GRB 170817A) with a time delay of âŒ1.7s with respect to the merger time. From the gravitational-wave signal, the source was initially localized to a sky region of 31 deg(2) at a luminosity distance of 40â8+8â Mpc and with component masses consistent with neutron stars. The component masses were later measured to be in the range 0.86 to 2.26 Mââ. An extensive observing campaign was launched across the electromagnetic spectrum leading to the discovery of a bright optical transient (SSS17a, now with the IAU identification of AT 2017gfo) in NGC 4993 (at âŒ40Mpc) less than 11 hours after the merger by the One-Meter, Two Hemisphere (1M2H) team using the 1 m Swope Telescope. The optical transient was independently detected by multiple teams within an hour. Subsequent observations targeted the object and its environment. Early ultraviolet observations revealed a blue transient that faded within 48 hours. Optical and infrared observations showed a redward evolution over âŒ10 days. Following early non-detections, X-ray and radio emission were discovered at the transientâs position âŒ9 and âŒ16 days, respectively, after the merger. Both the X-ray and radio emission likely arise from a physical process that is distinct from the one that generates the UV/optical/near-infrared emission. No ultra-high-energy gamma-rays and no neutrino candidates consistent with the source were found in follow-up searches. These observations support the hypothesis that GW170817 was produced by the merger of two neutron stars in NGC 4993 followed by a short gamma-ray burst (GRB 170817A) and a kilonova/macronova powered by the radioactive decay of r-process nuclei synthesized in the ejecta