Change search
Link to record
Permanent link

Direct link
Alternative names
Publications (10 of 12) Show all publications
McBrien, O. R., Smartt, S. J., Huber, M. E., Rest, A., Chambers, K. C., Barbieri, C., . . . Waters, C. (2021). PS15cey and PS17cke: prospective candidates from the Pan-STARRS Search for kilonovae. Monthly notices of the Royal Astronomical Society, 500(3), 4213-4228
Open this publication in new window or tab >>PS15cey and PS17cke: prospective candidates from the Pan-STARRS Search for kilonovae
Show others...
2021 (English)In: Monthly notices of the Royal Astronomical Society, ISSN 0035-8711, E-ISSN 1365-2966, Vol. 500, no 3, p. 4213-4228Article in journal (Refereed) Published
Abstract [en]

Time domain astronomy was revolutionized with the discovery of the first kilonova, AT2017gfo, in August 2017, which was associated with the gravitational wave signal GW170817. Since this event, numerous wide-field surveys have been optimizing search strategies to maximize their efficiency of detecting these fast and faint transients. With the Panoramic Survey Telescope and Rapid Response System (Pan-STARRS), we have been conducting a volume-limited survey for intrinsically faint and fast-fading events to a distance of D similar or equal to 200 Mpc. Two promising candidates have been identified from this archival search, with sparse data - PS15cey and PS17cke. Here, we present more detailed analysis and discussion of their nature. We observe that PS15cey was a luminous, fast-declining transient at 320 Mpc. Models of BH-NS mergers with a very stiff equation of state could possibly reproduce the luminosity and decline but the physical parameters are extreme. A more likely scenario is that this was an AT2018kzr-like merger event. PS17cke was a faint and fast-declining event at 15 Mpc. We explore several explosion scenarios of this transient including models of it as a NS-NS and BH-NS merger, the outburst of a massive luminous star, and compare it against other known fast-fading transients. Although there is uncertainty in the explosion scenario due to difficulty in measuring the explosion epoch, we find PS17cke to be a plausible kilonova candidate from the model comparisons.

Keywords
surveys, supernovae: general, black hole, neutron star mergers
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-191013 (URN)10.1093/mnras/staa3361 (DOI)000605983200101 ()
Available from: 2021-03-06 Created: 2021-03-06 Last updated: 2022-02-25Bibliographically approved
Schulze, S., Yaron, O., Sollerman, J., Leloudas, G., Gal, A., Wright, A. H., . . . Verbeek, K. K. (2021). The Palomar Transient Factory Core-collapse Supernova Host-galaxy Sample. I. Host-galaxy Distribution Functions and Environment Dependence of Core-collapse Supernovae. Astrophysical Journal Supplement Series, 255(2), Article ID 29.
Open this publication in new window or tab >>The Palomar Transient Factory Core-collapse Supernova Host-galaxy Sample. I. Host-galaxy Distribution Functions and Environment Dependence of Core-collapse Supernovae
Show others...
2021 (English)In: Astrophysical Journal Supplement Series, ISSN 0067-0049, E-ISSN 1538-4365, Vol. 255, no 2, article id 29Article in journal (Refereed) Published
Abstract [en]

Several thousand core-collapse supernovae (CCSNe) of different flavors have been discovered so far. However, identifying their progenitors has remained an outstanding open question in astrophysics. Studies of SN host galaxies have proven to be powerful in providing constraints on the progenitor populations. In this paper, we present all CCSNe detected between 2009 and 2017 by the Palomar Transient Factory. This sample includes 888 SNe of 12 distinct classes out to redshift z approximate to 1. We present the photometric properties of their host galaxies from the far-ultraviolet to the mid-infrared and model the host-galaxy spectral energy distributions to derive physical properties. The galaxy mass function of Type Ic, Ib, IIb, II, and IIn SNe ranges from 10(5) to 10(11.5) M (circle dot), probing the entire mass range of star-forming galaxies down to the least-massive star-forming galaxies known. Moreover, the galaxy mass distributions are consistent with models of star-formation-weighted mass functions. Regular CCSNe are hence direct tracers of star formation. Small but notable differences exist between some of the SN classes. Type Ib/c SNe prefer galaxies with slightly higher masses (i.e., higher metallicities) and star formation rates than Type IIb and II SNe. These differences are less pronounced than previously thought. H-poor superluminous supernovae (SLSNe) and SNe Ic-BL are scarce in galaxies above 10(10) M (circle dot). Their progenitors require environments with metallicities of < 0.4 and < 1 solar, respectively. In addition, the hosts of H-poor SLSNe are dominated by a younger stellar population than all other classes of CCSNe. Our findings corroborate the notion that low metallicity and young age play an important role in the formation of SLSN progenitors.

National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-197688 (URN)10.3847/1538-4365/abff5e (DOI)000683558500001 ()2-s2.0-85113360112 (Scopus ID)
Available from: 2021-10-14 Created: 2021-10-14 Last updated: 2022-11-11Bibliographically approved
Gutierrez, C. P., Sullivan, M., Martinez, L., Bersten, M. C., Inserra, C., Smith, M., . . . Wilkinson, R. (2020). DES16C3cje: A low-luminosity, long-lived supernova. Monthly notices of the Royal Astronomical Society, 496(1), 95-110
Open this publication in new window or tab >>DES16C3cje: A low-luminosity, long-lived supernova
Show others...
2020 (English)In: Monthly notices of the Royal Astronomical Society, ISSN 0035-8711, E-ISSN 1365-2966, Vol. 496, no 1, p. 95-110Article in journal (Refereed) Published
Abstract [en]

We present DES16C3cje, a low-luminosity, long-lived type II supernova (SN II) at redshift 0.0618, detected by the Dark Energy Survey (DES). DES16C3cje is a unique SN. The spectra are characterized by extremely narrow photospheric lines corresponding to very low expansion velocities of less than or similar to 1500 km s(-1), and the light curve shows an initial peak that fades after 50 d before slowly rebrightening over a further 100 d to reach an absolute brightness of M-r similar to 15.5 mag. The decline rate of the late-time light curve is then slower than that expected from the powering by radioactive decay of Co-56, but is comparable to that expected from accretion power. Comparing the bolometric light curve with hydrodynamical models, we find that DES16C3cje can be explained by either (i) a low explosion energy (0.11 foe) and relatively large Ni-56 production of 0.075 M-circle dot from an similar to 15 M-circle dot red supergiant progenitor typical of other SNe II, or (ii) a relatively compact similar to 40 M-circle dot star, explosion energy of 1 foe, and 0.08 M-circle dot of Ni-56. Both scenarios require additional energy input to explain the late-time light curve, which is consistent with fallback accretion at a rate of similar to 0.5 x 10(-)(8) M-circle dot s(-1).

Keywords
supernovae: general, supernovae: individual: (DES16C3cje)
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-185472 (URN)10.1093/mnras/staa1452 (DOI)000560784700009 ()
Available from: 2020-10-21 Created: 2020-10-21 Last updated: 2022-02-25Bibliographically approved
Gromadzki, M., Hamanowicz, A., Wyrzykowski, L., Sokolovsky, K. V., Fraser, M., Kozłowski, S., . . . Buckley, D. A. (2019). Discovery and follow-up of the unusual nuclear transient OGLE17aaj. Astronomy and Astrophysics, 622, Article ID L2.
Open this publication in new window or tab >>Discovery and follow-up of the unusual nuclear transient OGLE17aaj
Show others...
2019 (English)In: Astronomy and Astrophysics, ISSN 0004-6361, E-ISSN 1432-0746, Vol. 622, article id L2Article in journal (Refereed) Published
Abstract [en]

Aims. We report on the discovery and follow-up of a peculiar transient, OGLE17aaj, which occurred in the nucleus of a weakly active galaxy. We investigate whether it can be interpreted as a new candidate for a tidal disruption event (TDE).

Methods. We present the OGLE-IV light curve that covers the slow 60-day-long rise to maximum along with photometric, spectro-scopic, and X-ray follow-up during the first year.

Results. OGLE17aaj is a nuclear transient exhibiting some properties similar to previously found TDEs, including a long rise time, lack of colour-temperature evolution, and high black-body temperature. On the other hand, its narrow emission lines and slow post-peak evolution are different from previously observed TDEs. Its spectrum and light-curve evolution is similar to F01004-2237 and AT 2017bgt. Signatures of historical low-level nuclear variability suggest that OGLE17aaj may instead be related to a new type of accretion event in active super-massive black holes.

Keywords
black hole physics, Galaxy: nucleus
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-166794 (URN)10.1051/0004-6361/201833682 (DOI)000456679800002 ()
Available from: 2019-03-12 Created: 2019-03-12 Last updated: 2022-02-26Bibliographically approved
Prentice, S. J., Ashall, C., James, P. A., Short, L., Mazzali, P. A., Bersier, D., . . . Young, D. R. (2019). Investigating the properties of stripped-envelope supernovae; what are the implications for their progenitors?. Monthly notices of the Royal Astronomical Society, 485(2), 1559-1578
Open this publication in new window or tab >>Investigating the properties of stripped-envelope supernovae; what are the implications for their progenitors?
Show others...
2019 (English)In: Monthly notices of the Royal Astronomical Society, ISSN 0035-8711, E-ISSN 1365-2966, Vol. 485, no 2, p. 1559-1578Article in journal (Refereed) Published
Abstract [en]

We present observations and analysis of 18 stripped-envelope supernovae observed during 2013-2018. This sample consists of five H/He-rich SNe, sixH-poor/He-rich SNe, three narrow lined SNe Ic, and four broad lined SNe Ic. The peak luminosity and characteristic time-scales of the bolometric light curves are calculated, and the light curves modelled to derive Ni-56 and ejecta masses (M-Ni and M-cj). Additionally, the temperature evolution and spectral line velocity curves of each SN are examined. Analysis of the [O I] line in the nebular phase of eight SNe suggests their progenitors had initial masses < 20 M-circle dot. The bolometric light curve properties are examined in combination with those of other SE events from the literature. The resulting data set gives the M-ej distribution for 80 SE-SNe, the largest such sample in the literature to date, and shows that SNe Ib have the lowest median M-ej, followed by narrow-lined SNe Ic, H/He-rich SNe, broad-lined SNe Ic, and finally gamma-ray burst SNe. SNe Ic-6/7 show the largest spread of M-ej ranging from similar to 1.2-11 M-circle dot, considerably greater than any other subtype. For all SE-SNe <M-ej> = 2.8 +/- 1.5 M-circle dot which further strengthens the evidence that SE-SNe arise from low-mass progenitors which are typically <5 M-circle dot at the time of explosion, again suggesting M-ZAMS < 25 M-circle dot. The low <M-ej> and lack of clear bimodality in the distribution implies < 30 M-circle dot progenitors and that envelope stripping via binary interaction is the dominant evolutionary pathway of these SNe.

Keywords
Supernovae: general
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-172063 (URN)10.1093/mnras/sty3399 (DOI)000474886200005 ()
Available from: 2019-08-22 Created: 2019-08-22 Last updated: 2022-02-26Bibliographically approved
Pastorello, A., Chen, T.-W. -., Cai, Y.-Z. -., Morales-Garoffolo, A., Cano, Z., Mason, E., . . . Young, D. R. (2019). The evolution of luminous red nova AT 2017jfs in NGC 4470. Astronomy and Astrophysics, 625, Article ID L8.
Open this publication in new window or tab >>The evolution of luminous red nova AT 2017jfs in NGC 4470
Show others...
2019 (English)In: Astronomy and Astrophysics, ISSN 0004-6361, E-ISSN 1432-0746, Vol. 625, article id L8Article in journal (Refereed) Published
Abstract [en]

We present the results of our photometric and spectroscopic follow-up of the intermediate-luminosity optical transient AT 2017jfs. At peak, the object reaches an absolute magnitude of M-g = 15.46 +/- 0.15 mag and a bolometric luminosity of 5.5 x 10(41) erg s(-1). Its light curve has the double-peak shape typical of luminous red novae (LRNe), with a narrow first peak bright in the blue bands, while the second peak is longer-lasting and more luminous in the red and near-infrared (NIR) bands. During the first peak, the spectrum shows a blue continuum with narrow emission lines of H and Fe II. During the second peak, the spectrum becomes cooler, resembling that of a K-type star, and the emission lines are replaced by a forest of narrow lines in absorption. About 5 months later, while the optical light curves are characterized by a fast linear decline, the NIR ones show a moderate rebrightening, observed until the transient disappears in solar conjunction. At these late epochs, the spectrum becomes reminiscent of that of M-type stars, with prominent molecular absorption bands. The late-time properties suggest the formation of some dust in the expanding common envelope or an IR echo from foreground pre-existing dust. We propose that the object is a common-envelope transient, possibly the outcome of a merging event in a massive binary, similar to NGC4490-2011OT1.

Keywords
binaries: close, stars: massive, supernovae: individual: AT 2017jfs, supernovae: individual: NGC440-2011OT1, stars: winds, outflows
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-170037 (URN)10.1051/0004-6361/201935511 (DOI)000468127400002 ()2-s2.0-85071258065 (Scopus ID)
Available from: 2019-06-24 Created: 2019-06-24 Last updated: 2022-11-04Bibliographically approved
Cai, Y.-Z., Pastorello, A., Fraser, M., Prentice, S. J., Reynolds, T. M., Cappellaro, E., . . . Valerin, G. (2019). The transitional gap transient AT 2018hso: new insights into the luminous red nova phenomenon. Astronomy and Astrophysics, 632, Article ID L6.
Open this publication in new window or tab >>The transitional gap transient AT 2018hso: new insights into the luminous red nova phenomenon
Show others...
2019 (English)In: Astronomy and Astrophysics, ISSN 0004-6361, E-ISSN 1432-0746, Vol. 632, article id L6Article in journal (Refereed) Published
Abstract [en]

Context. The absolute magnitudes of luminous red novae (LRNe) are intermediate between those of novae and supernovae (SNe), and show a relatively homogeneous spectro-photometric evolution. Although they were thought to derive from core instabilities in single stars, there is growing support for the idea that they are triggered by binary interaction that possibly ends with the merging of the two stars.

Aims. AT 2018hso is a new transient showing transitional properties between those of LRNe and the class of intermediate-luminosity red transients (ILRTs) similar to SN 2008S. Through the detailed analysis of the observed parameters, our study supports that it actually belongs to the LRN class and was likely produced by the coalescence of two massive stars.

Methods. We obtained ten months of optical and near-infrared photometric monitoring, and 11 epochs of low-resolution optical spectroscopy of AT 2018hso. We compared its observed properties with those of other ILRTs and LRNe. We also inspected the archival Hubble Space Telescope (HST) images obtained about 15 years ago to constrain the progenitor properties.

Results. The light curves of AT 2018hso show a first sharp peak (reddening-corrected M-r = -13.93 mag), followed by a broader and shallower second peak that resembles a plateau in the optical bands. The spectra dramatically change with time. Early-time spectra show prominent Balmer emission lines and a weak [Ca II] doublet, which is usually observed in ILRTs. However, the strong decrease in the continuum temperature, the appearance of narrow metal absorption lines, the great change in the H alpha strength and profile, and the emergence of molecular bands support an LRN classification. The possible detection of a M-I similar to -8 mag source at the position of AT 2018hso in HST archive images is consistent with expectations for a pre-merger massive binary, similar to the precursor of the 2015 LRN in M101.

Conclusions. We provide reasonable arguments to support an LRN classification for AT 2018hso. This study reveals growing heterogeneity in the observables of LRNe than has been thought previously, which is a challenge for distinguishing between LRNe and ILRTs. This suggests that the entire evolution of gap transients needs to be monitored to avoid misclassifications.

Keywords
binaries: close, stars: winds, outflows, stars: massive, supernovae: individual: AT 2018hso, supernovae: individual: AT 2017jfs supernovae, individual: NGC4490-2011OT1
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-178685 (URN)10.1051/0004-6361/201936749 (DOI)000505732100001 ()2-s2.0-85084535148 (Scopus ID)
Available from: 2020-02-19 Created: 2020-02-19 Last updated: 2022-11-04Bibliographically approved
Cai, Y.-Z., Pastorello, A., Fraser, M., Botticella, M. T., Gall, C., Arcavi, I., . . . Terreran, G. (2018). AT 2017be-a new member of the class of intermediate-luminosity red transients. Monthly notices of the Royal Astronomical Society, 480(3), 3424-3445
Open this publication in new window or tab >>AT 2017be-a new member of the class of intermediate-luminosity red transients
Show others...
2018 (English)In: Monthly notices of the Royal Astronomical Society, ISSN 0035-8711, E-ISSN 1365-2966, Vol. 480, no 3, p. 3424-3445Article in journal (Refereed) Published
Abstract [en]

We report the results of our spectrophotometric monitoring campaign for AT 2017be in NGC 2537. Its light curve reveals a fast rise to an optical maximum, followed by a plateau lasting about 30 d, and finally a fast decline. Its absolute peak magnitude (M-r similar or equal to -12 mag) is fainter than that of core-collapse supernovae, and is consistent with those of supernova impostors and other intermediate-luminosity optical transients. The quasi-bolometric light-curve peaks at similar to 2 x 10(40) erg s(-1), and the late-time photometry allows us to constrain an ejected Ni-56 mass of similar to 8 x 10(-4)M(circle dot). The spectra of AT 2017 be show minor evolution over the observational period, a relatively blue continuum showing at early phases, which becomes redder with time. A prominent H alpha emission line always dominates over other Balmer lines. Weak Fe II features, Can H&K, and the Ca II NIR triplet are also visible, while P-Cygni absorption troughs are found in a high-resolution spectrum. In addition, the [Ca II] lambda lambda 7291, 7324 doublet is visible in all spectra. This feature is typical of intermediate-luminosity red transients (ILRTs), similar to SN 2008S. The relatively shallow archival Spitzer data are not particularly constraining. On the other hand, a non-detection in deeper near-infrared HST images disfavours a massive Luminous Blue Variable eruption as the origin for AT 2017be. As has been suggested for other ILRTs, we propose that AT 2017be is a candidate for a weak electron-capture supernova explosion of a superasymptotic giant branch star, still embedded in a thick dusty envelope.

Keywords
stars: AGB and post-AGB, stars: mass-loss, supernovae: general, galaxies: individual: NGC 2537, supernovae: individual: AT 2017be
National Category
Astronomy, Astrophysics and Cosmology
Identifiers
urn:nbn:se:su:diva-162999 (URN)10.1093/mnras/sty2070 (DOI)000449616200043 ()
Available from: 2018-12-12 Created: 2018-12-12 Last updated: 2022-02-26Bibliographically approved
Bose, S., Dong, S., Pastorello, A., Filippenko, A. V., Kochanek, C. S., Mauerhan, J., . . . Yunus, S. (2018). Gaia17biu/SN 2017egm in NGC 3191: The Closest Hydrogen-poor Superluminous Supernova to Date Is in a Normal, Massive, Metal-rich Spiral Galaxy. Astrophysical Journal, 853(1), Article ID 57.
Open this publication in new window or tab >>Gaia17biu/SN 2017egm in NGC 3191: The Closest Hydrogen-poor Superluminous Supernova to Date Is in a Normal, Massive, Metal-rich Spiral Galaxy
Show others...
2018 (English)In: Astrophysical Journal, ISSN 0004-637X, E-ISSN 1538-4357, Vol. 853, no 1, article id 57Article in journal (Refereed) Published
Abstract [en]

Hydrogen-poor superluminous supernovae (SLSNe-I) have been predominantly found in low-metallicity, star-forming dwarf galaxies. Here we identify Gaia17biu/SN 2017egm as an SLSN-I occurring in a normal spiral galaxy (NGC 3191) in terms of stellar mass (several times 10(10) M-circle dot) and metallicity (roughly solar). At redshift z = 0.031, Gaia17biu is also the lowest-redshift SLSN-I to date, and the absence of a larger population of SLSNe-I in dwarf galaxies of similar redshift suggests that metallicity is likely less important to the production of SLSNe-I than previously believed. With the smallest distance and highest apparent brightness for an SLSN-I, we are able to study Gaia17biu in unprecedented detail. Its pre-peak near-ultraviolet to optical color is similar to that of Gaia16apd and among the bluest observed for an SLSN-I, while its peak luminosity (M-g = -21 mag) is substantially lower than that of Gaia16apd. Thanks to the high signal-to-noise ratios of our spectra, we identify several new spectroscopic features that may help to probe the properties of these enigmatic explosions. We detect polarization at the similar to 0.5% level that is not strongly dependent on wavelength, suggesting a modest, global departure from spherical symmetry. In addition, we put the tightest upper limit yet on the radio luminosity of an SLSN-I with < 5.4 x 10(26) erg s(-1) Hz(-1) at 10 GHz, which is almost a factor of 40 better than previous upper limits and one of the few measured at an early stage in the evolution of an SLSN-I. This limit largely rules out an association of this SLSN-I with known populations of gamma-ray-burst-like central engines.

Keywords
galaxies: individual (NGC 3191), supernovae: general, supernovae: individual (SN 2017egm Gaia17biu)
National Category
Astronomy, Astrophysics and Cosmology
Identifiers
urn:nbn:se:su:diva-153823 (URN)10.3847/1538-4357/aaa298 (DOI)000423305600008 ()
Available from: 2018-03-09 Created: 2018-03-09 Last updated: 2022-02-28Bibliographically approved
Pastorello, A., Kochanek, C. S., Fraser, M., Dong, S., Elias-Rosa, N., Filippenko, A. V., . . . Zheng, W. (2018). Supernovae 2016bdu and 2005gl, and their link with SN 2009ip-like transients: another piece of the puzzle. Monthly notices of the Royal Astronomical Society, 474(1), 197-218
Open this publication in new window or tab >>Supernovae 2016bdu and 2005gl, and their link with SN 2009ip-like transients: another piece of the puzzle
Show others...
2018 (English)In: Monthly notices of the Royal Astronomical Society, ISSN 0035-8711, E-ISSN 1365-2966, Vol. 474, no 1, p. 197-218Article in journal (Refereed) Published
Abstract [en]

Supernova (SN) 2016bdu is an unusual transient resembling SN 2009ip. SN 2009ip-like events are characterized by a long-lasting phase of erratic variability that ends with two luminous outbursts a few weeks apart. The second outburst is significantly more luminous (about 3 mag) than the first. In the case of SN 2016bdu, the first outburst (Event A) reached an absolute magnitude M-r approximate to -15.3 mag, while the second one (Event B) occurred over one month later and reached M-r approximate to -18 mag. By inspecting archival data, a faint source at the position of SN 2016bdu is several times in the past few years. We interpret these detections as signatures of a phase of erratic variability, similar to that experienced by SN 2009ip between 2008 and mid-2012, and resembling the currently observed variability of the luminous blue variable SN 2000ch in NGC 3432. Spectroscopic monitoring of SN 2016bdu during the second peak initially shows features typical of an SN IIn. One month after the Event B maximum, the spectra develop broad Balmer lines with P Cygni profiles and broad metal features. At these late phases, the spectra resemble those of a typical Type II SN. All members of this SN 2009ip-like group are remarkably similar to the Type IIn SN 2005gl. For this object, the claim of a terminal SN explosion is supported by the disappearance of the progenitor star. While the similarity with SN 2005gl supports a genuine SN explosion scenario for SN 2009ip-like events, the unequivocal detection of nucleosynthesized elements in their nebular spectra is still missing.

Keywords
supernovae: general, supernovae: individual: SN 2016bdu, SN 2005gl, SN 2009ip, SN 2010mc, LSQ13zm, SN 2015bh
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-153638 (URN)10.1093/mnras/stx2668 (DOI)000424339500017 ()
Available from: 2018-03-12 Created: 2018-03-12 Last updated: 2022-02-28Bibliographically approved
Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0003-2191-1674

Search in DiVA

Show all publications