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Roy, Rupak
Publications (10 of 10) Show all publications
Banerjee, D. P., Joshi, V., Evans, A., Srivastava, M., Ashok, N. M., Gehrz, R. D., . . . Roy, R. (2018). Early formation of carbon monoxide in the Centaurus A supernova SN 2016adj. Monthly notices of the Royal Astronomical Society, 481(1), 806-818
Open this publication in new window or tab >>Early formation of carbon monoxide in the Centaurus A supernova SN 2016adj
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2018 (English)In: Monthly notices of the Royal Astronomical Society, ISSN 0035-8711, E-ISSN 1365-2966, Vol. 481, no 1, p. 806-818Article in journal (Refereed) Published
Abstract [en]

We present near-infrared spectroscopy of the NGC 5128 supernova SN 2016adj in the first two months following discovery. We report the detection of first-overtone carbon monoxide emission at similar to 58.2 d after discovery, one of the earliest detections of CO in an erupting supernova. We model the CO emission to derive the CO mass, temperature, and velocity, assuming both pure (CO)-C-12 and a composition that includes (CO)-C-13; the case for the latter is the isotopic analyses of meteoritic grains, which suggest that core-collapse supernovae can synthesize significant amounts of C-13. Our models show that, while the CO data are adequately explained by pure (CO)-C-12, they do not preclude the presence of (CO)-C-13, to a limit of C-12/C-13 > 3, the first constraint on the C-12/C-13 ratio determined from near-infrared observations. We estimate the reddening to the object, and the effective temperature from the energy distribution at outburst. We discuss whether the ejecta of SN 2016adj may be carbon-rich, what the infrared data tell us about the classification of this supernova, and what implications the early formation of CO in supernovae may have for CO formation in supernovae in general.

Keywords
techniques: spectroscopic, supernovae: general, supernovae: individual: SN 2016adj, infrared: stars
National Category
Astronomy, Astrophysics and Cosmology
Identifiers
urn:nbn:se:su:diva-162990 (URN)10.1093/mnras/sty2255 (DOI)000449651400057 ()
Available from: 2018-12-12 Created: 2018-12-12 Last updated: 2022-02-26Bibliographically approved
Hung, T., Gezari, S., Cenko, S. B., van Velzen, S., Blagorodnova, N., Yan, L., . . . Petrushevska, T. (2018). Sifting for Sapphires: Systematic Selection of Tidal Disruption Events in iPTF. Astrophysical Journal Supplement Series, 238(2), Article ID 15.
Open this publication in new window or tab >>Sifting for Sapphires: Systematic Selection of Tidal Disruption Events in iPTF
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2018 (English)In: Astrophysical Journal Supplement Series, ISSN 0067-0049, E-ISSN 1538-4365, Vol. 238, no 2, article id 15Article in journal (Refereed) Published
Abstract [en]

We present results from a systematic selection of tidal disruption events (TDEs) in a wide-area (4800 deg(2)), g+ R band, Intermediate Palomar Transient Factory experiment. Our selection targets typical optically selected TDEs: bright (> 60% flux increase) and blue transients residing in the centers of red galaxies. Using photometric selection criteria to down-select from a total of 493 nuclear transients to a sample of 26 sources, we then use follow-up UV imaging with the Neil Gehrels Swift Telescope, ground-based optical spectroscopy, and light curve fitting to classify them as 14 Type Ia supernovae (SNe Ia), 9 highly variable active galactic nuclei (AGNs), 2 confirmed TDEs, and 1 potential core-collapse supernova. We find it possible to filter AGNs by employing a more stringent transient color cut (g - r < -0.2 mag); further, UV imaging is the best discriminator for filtering SNe, since SNe Ia can appear as blue, optically, as TDEs in their early phases. However, when UV-optical color is unavailable, higher-precision astrometry can also effectively reduce SNe contamination in the optical. Our most stringent optical photometric selection criteria yields a 4.5: 1 contamination rate, allowing for a manageable number of TDE candidates for complete spectroscopic follow-up and real-time classification in the Zwicky Transient Facility era. We measure a TDE per galaxy rate of 1.7(-1.3)(+2.9) 10(-4) gal yr(-1) (90% CL in Poisson statistics). This does not account for TDEs outside our selection criteria, and thus may not reflect the total TDE population, which is yet to be fully mapped.

Keywords
accretion, accretion disks, black hole physics, galaxies: nuclei, surveys, ultraviolet: general
National Category
Astronomy, Astrophysics and Cosmology
Identifiers
urn:nbn:se:su:diva-161019 (URN)10.3847/1538-4365/aad8b1 (DOI)000445958800001 ()2-s2.0-85055694193 (Scopus ID)
Available from: 2018-10-15 Created: 2018-10-15 Last updated: 2022-10-26Bibliographically approved
Kuncarayakti, H., Maeda, K., Ashall, C. J., Prentice, S. J., Mattila, S., Kankare, E., . . . Young, D. R. (2018). SN 2017dio: A Type-Ic Supernova Exploding in a Hydrogen-rich Circumstellar Medium. Astrophysical Journal Letters, 854(1), Article ID L14.
Open this publication in new window or tab >>SN 2017dio: A Type-Ic Supernova Exploding in a Hydrogen-rich Circumstellar Medium
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2018 (English)In: Astrophysical Journal Letters, ISSN 2041-8205, E-ISSN 2041-8213, Vol. 854, no 1, article id L14Article in journal (Refereed) Published
Abstract [en]

SN 2017dio shows both spectral characteristics of a type-Ic supernova (SN) and signs of a hydrogen-rich circumstellar medium (CSM). Prominent, narrow emission lines of H and He are superposed on the continuum. Subsequent evolution revealed that the SN ejecta are interacting with the CSM. The initial SN Ic identification was confirmed by removing the CSM interaction component from the spectrum and comparing with known SNe Ic and, reversely, adding a CSM interaction component to the spectra of known SNe Ic and comparing them to SN 2017dio. Excellent agreement was obtained with both procedures, reinforcing the SN Ic classification. The light curve constrains the pre-interaction SN Ic peak absolute magnitude to be around M-g = -17.6 mag. No evidence of significant extinction is found, ruling out a brighter luminosity required by an SN Ia classification. These pieces of evidence support the view that SN 2017dio is an SN Ic, and therefore the first firm case of an SN Ic with signatures of hydrogen-rich CSM in the early spectrum. The CSM is unlikely to have been shaped by steady-state stellar winds. The mass loss of the progenitor star must have been intense, M similar to 0.02 (epsilon(H alpha)/0.01)(-1) (nu(wind)/500 km s(-1)) (nu(shock)/10,000 km s(-1))M--3(circle dot) yr(-1), peaking at a few decades before the SN. Such a high mass-loss rate might have been experienced by the progenitor through eruptions or binary stripping.

Keywords
supernovae: general, supernovae: individual (SN 2017dio)
National Category
Astronomy, Astrophysics and Cosmology
Identifiers
urn:nbn:se:su:diva-153758 (URN)10.3847/2041-8213/aaaa1a (DOI)000424684500005 ()
Available from: 2018-03-27 Created: 2018-03-27 Last updated: 2022-02-28Bibliographically approved
Smartt, S. J., Chen, T.-W. -., Jerkstrand, A., Coughlin, M., Kankare, E., Sim, S. A., . . . Yaron, O. (2017). A kilonova as the electromagnetic counterpart to a gravitational-wave source. Nature, 551(7678), 75-+
Open this publication in new window or tab >>A kilonova as the electromagnetic counterpart to a gravitational-wave source
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2017 (English)In: Nature, ISSN 0028-0836, E-ISSN 1476-4687, Vol. 551, no 7678, p. 75-+Article in journal (Refereed) Published
Abstract [en]

Gravitational waves were discovered with the detection of binary black-hole mergers(1) and they should also be detectable from lower-mass neutron-star mergers. These are predicted to eject material rich in heavy radioactive isotopes that can power an electromagnetic signal. This signal is luminous at optical and infrared wavelengths and is called a kilonova(2-5). The gravitational-wave source GW170817 arose from a binary neutron-star merger in the nearby Universe with a relatively well confined sky position and distance estimate(6). Here we report observations and physical modelling of a rapidly fading electromagnetic transient in the galaxy NGC 4993, which is spatially coincident with GW170817 and with a weak, short.-ray burst(7,8). The transient has physical parameters that broadly match the theoretical predictions of blue kilonovae from neutron-star mergers. The emitted electromagnetic radiation can be explained with an ejected mass of 0.04 +/- 0.01 solar masses, with an opacity of less than 0.5 square centimetres per gram, at a velocity of 0.2 +/- 0.1 times light speed. The power source is constrained to have a power-law slope of -1.2 +/- 0.3, consistent with radioactive powering from r-process nuclides. (The r-process is a series of neutron capture reactions that synthesise many of the elements heavier than iron.) We identify line features in the spectra that are consistent with light r-process elements (atomic masses of 90-140). As it fades, the transient rapidly becomes red, and a higher-opacity, lanthanide-rich ejecta component may contribute to the emission. This indicates that neutron-star mergers produce gravitational waves and radioactively powered kilonovae, and are a nucleosynthetic source of the r-process elements.

National Category
Astronomy, Astrophysics and Cosmology
Identifiers
urn:nbn:se:su:diva-149994 (URN)10.1038/nature24303 (DOI)000414222900047 ()29094693 (PubMedID)2-s2.0-85032825905 (Scopus ID)
Available from: 2017-12-21 Created: 2017-12-21 Last updated: 2022-10-19Bibliographically approved
Yan, L., Lunnan, R., Perley, D. A., Gal-Yam, A., Yaron, O., Roy, R., . . . Wozniak, P. (2017). Hydrogen-poor Superluminous Supernovae with Late-time H alpha Emission: Three Events From the Intermediate Palomar Transient Factory. Astrophysical Journal, 848(1), Article ID 6.
Open this publication in new window or tab >>Hydrogen-poor Superluminous Supernovae with Late-time H alpha Emission: Three Events From the Intermediate Palomar Transient Factory
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2017 (English)In: Astrophysical Journal, ISSN 0004-637X, E-ISSN 1538-4357, Vol. 848, no 1, article id 6Article in journal (Refereed) Published
Abstract [en]

We present observations of two new hydrogen-poor superluminous supernovae (SLSN-I), iPTF15esb and iPTF16bad, showing late-time H alpha emission with line luminosities of (1-3) x 10(41) erg s(-1) and velocity widths of (4000-6000) km s(-1). Including the previously published iPTF13ehe, this makes up a total of three such events to date. iPTF13ehe is one of the most luminous and the slowest evolving SLSNe-I, whereas the other two are less luminous and fast decliners. We interpret this as a result of the ejecta running into a neutral H-shell located at a radius of similar to 10(16) cm. This implies that violent mass loss must have occurred several decades before the supernova explosion. Such a short time interval suggests that eruptive mass loss could be common shortly before core collapse, and more importantly helium is unlikely to be completely stripped off the progenitor and could be present in the ejecta. It is a mystery why helium features are not detected, even though nonthermal energy sources, capable of ionizing He, may exist as suggested by the O II absorption series in the early-time spectra. Our late-time spectra (+240 days) appear to have intrinsically lower [O I] 6300 angstrom luminosities than that of SN2015bn and SN2007bi, which is possibly an indication of less oxygen (<10 M-circle dot). The blueshifted H alpha emission relative to the hosts for all three events may be in tension with the binary model proposed for iPTF13ehe. Finally, iPTF15esb has a peculiar light curve (LC) with three peaks separated from one another by similar to 22 days. The LC undulation is stronger in bluer bands. One possible explanation is ejecta-circumstellar medium interaction.

Keywords
stars: massive, supernovae: individual (iPTF13ehe, iPTF15esb, iPTF16bad)
National Category
Astronomy, Astrophysics and Cosmology
Identifiers
urn:nbn:se:su:diva-149026 (URN)10.3847/1538-4357/aa8993 (DOI)000412397800006 ()
Available from: 2017-11-17 Created: 2017-11-17 Last updated: 2022-02-28Bibliographically approved
Ahrens, M., Bohm, C., Conrad, J. M., Dumm, J. P., Finley, C., Flis, S., . . . Wagner, R. M. (2017). Multi-messenger Observations of a Binary Neutron Star Merger. Astrophysical Journal Letters, 848(2), Article ID L12.
Open this publication in new window or tab >>Multi-messenger Observations of a Binary Neutron Star Merger
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2017 (English)In: Astrophysical Journal Letters, ISSN 2041-8205, E-ISSN 2041-8213, Vol. 848, no 2, article id L12Article in journal (Refereed) Published
Abstract [en]

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 similar to 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 deg(2) 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 M-circle dot. 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 similar to 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 similar to 10 days. Following early non-detections, X-ray and radio emission were discovered at the transient's position similar to 9 and similar to 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.

Keywords
gravitational waves, stars: neutron
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-149847 (URN)10.3847/2041-8213/aa91c9 (DOI)000413211000001 ()
Available from: 2017-12-20 Created: 2017-12-20 Last updated: 2022-03-23Bibliographically approved
Nandi, S., Jamrozy, M., Roy, R., Larsson, J., Saikia, D. J., Baes, M. & Singh, M. (2017). Tale of J1328+2752: a misaligned double-double radio galaxy hosted by a binary black hole?. Monthly notices of the Royal Astronomical Society, 467(1), l56-L60
Open this publication in new window or tab >>Tale of J1328+2752: a misaligned double-double radio galaxy hosted by a binary black hole?
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2017 (English)In: Monthly notices of the Royal Astronomical Society, ISSN 0035-8711, E-ISSN 1365-2966, Vol. 467, no 1, p. l56-L60Article in journal (Refereed) Published
Abstract [en]

We present a radio and optical study of the double-double radio galaxy J1328+2752 based on new low-frequency Giant Metrewave Radio Telescope observations and Sloan Digital Sky Survey (SDSS) data. The radio data were used to investigate the morphology and to perform a spectral index analysis. In this source, we find that the inner double is misaligned by similar to 30 degrees from the axis of the outer diffuse structure. The SDSS spectrum shows that the central component has double-peaked line profiles with different emission strengths. The average velocity offset of the two components is 235 +/- 10.5 kms(-1). The misaligned radio morphology along with the double-peaked emission lines indicate that this source is a potential candidate binary supermassive black hole. This study further supports mergers as a possible explanation for repeated jet activity in radio sources.

Keywords
line: identification, line: profiles, galaxies: active, galaxies: individual: J1328+2752, galaxies: nuclei, radio continuum: galaxies
National Category
Astronomy, Astrophysics and Cosmology
Identifiers
urn:nbn:se:su:diva-147966 (URN)10.1093/mnrasl/slw256 (DOI)000410063700012 ()
Available from: 2017-10-16 Created: 2017-10-16 Last updated: 2022-02-28Bibliographically approved
Nyholm, A., Sollerman, J., Taddia, F., Fremling, C., Moriya, T. J., Ofek, E. O., . . . Masci, F. J. (2017). The bumpy light curve of Type IIn supernova iPTF13z over 3 years. Astronomy and Astrophysics, 605, Article ID A6.
Open this publication in new window or tab >>The bumpy light curve of Type IIn supernova iPTF13z over 3 years
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2017 (English)In: Astronomy and Astrophysics, ISSN 0004-6361, E-ISSN 1432-0746, Vol. 605, article id A6Article in journal (Refereed) Published
Abstract [en]

A core-collapse (CC) supernova (SN) of Type IIn is dominated by the interaction of SN ejecta with the circumstellar medium (CSM). Some SNe IIn (e.g. SN 2006jd) have episodes of re-brightening (''bumps'') in their light curves. We present iPTF13z, a Type IIn SN discovered on 2013 February 1 by the intermediate Palomar Transient Factory (iPTF). This SN showed at least five bumps in its declining light curve between 130 and 750 days after discovery. We analyse this peculiar behaviour and try to infer the properties of the CSM, of the SN explosion, and the nature of the progenitor star. We obtained multi-band optical photometry for over 1000 days after discovery with the P48 and P60 telescopes at Palomar Observatory. We obtained low-resolution optical spectra during the same period. We did an archival search for progenitor outbursts. We analyse the photometry and the spectra, and compare iPTF13z to other SNe IIn. In particular we derive absolute magnitudes, colours, a pseudo-bolometric light curve, and the velocities of the different components of the spectral lines. A simple analytical model is used to estimate the properties of the CSM. iPTF13z had a light curve peaking at Mr <~ -18.3 mag. The five bumps during its decline phase had amplitudes ranging from 0.4 to 0.9 mag and durations between 20 and 120 days. The most prominent bumps appeared in all the different optical bands, when covered. The spectra of this SN showed typical SN IIn characteristics, with emission lines of Hα (with broad component FWHM ~ 103 - 104 km s-1 and narrow component FWHM ~ 102 km s-1) and He I, but also with Fe II, Ca II, Na I D and Hβ P Cygni profiles (with velocities of ~ 103 km  s-1). A pre-explosion outburst was identified lasting >~ 50 days, with Mr  -15 mag around 210 days before discovery. Large, variable progenitor mass-loss rates (>~ 0.01 MSun yr-1) and CSM densities (>~ 10-16 g cm-3) are derived. The SN was hosted by a metal-poor dwarf galaxy at redshift z = 0.0328. We suggest that the light curve bumps of iPTF13z arose from SN ejecta interacting with denser regions in the CSM, possibly produced by the eruptions of a luminous blue variable progenitor star.

Keywords
supernovae: general, supernovae: individual: iPTF13z, galaxies: individual: SDSS J160200.05+211442.3
National Category
Astronomy, Astrophysics and Cosmology
Research subject
Astronomy
Identifiers
urn:nbn:se:su:diva-147273 (URN)10.1051/0004-6361/201629906 (DOI)000412231200072 ()
Available from: 2017-09-20 Created: 2017-09-20 Last updated: 2022-02-28Bibliographically approved
Roy, R., Sollerman, J., Silverman, J. M., Pastorello, A., Fransson, C., Drake, A., . . . Migotto, K. (2016). SN 2012aa: A transient between Type Ibc core-collapse and superluminous supernovae. Astronomy and Astrophysics, 596, Article ID A67.
Open this publication in new window or tab >>SN 2012aa: A transient between Type Ibc core-collapse and superluminous supernovae
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2016 (English)In: Astronomy and Astrophysics, ISSN 0004-6361, E-ISSN 1432-0746, Vol. 596, article id A67Article in journal (Refereed) Published
Abstract [en]

Context. Research on supernovae (SNe) over the past decade has confirmed that there is a distinct class of events which are much more luminous (by similar to 2 mag) than canonical core-collapse SNe (CCSNe). These events with visual peak magnitudes less than or similar to-21 are called superluminous SNe (SLSNe). The mechanism that powers the light curves of SLSNe is still not well understood. The proposed scenarios are circumstellar interaction, the emergence of a magnetar after core collapse, or disruption of a massive star through pair production. Aims. There are a few intermediate events which have luminosities between these two classes. They are important for constraining the nature of the progenitors of these two different populations and their environments and powering mechanisms. Here we study one such object, SN 2012aa. Methods. We observed and analysed the evolution of the luminous Type Ic SN 2012aa. The event was discovered by the Lick Observatory Supernova Search in an anonymous galaxy (z approximate to 0.08). The optical photometric and spectroscopic follow-up observations were conducted over a time span of about 120 days. Results. With an absolute V-band peak of similar to-20 mag, the SN is an intermediate-luminosity transient between regular SNe Ibc and SLSNe. SN 2012aa also exhibits an unusual secondary bump after the maximum in its light curve. For SN 2012aa, we interpret this as a manifestation of SN-shock interaction with the circumstellar medium (CSM). If we assume a Ni-56-powered ejecta, the quasi-bolometric light curve requires roughly 1.3 M-circle dot of Ni-56 and an ejected mass of similar to 14 M-circle dot. This also implies a high kinetic energy of the explosion, similar to 5.4 x 10(51) erg. On the other hand, the unusually broad light curve along with the secondary peak indicate the possibility of interaction with CSM. The third alternative is the presence of a central engine releasing spin energy that eventually powers the light curve over a long time. The host of SN 2012aa is a star-forming Sa/Sb/Sbc galaxy. Conclusions. Although the spectral properties of SN 2012aa and its velocity evolution are comparable to those of normal SNe Ibc, its broad light curve along with a large peak luminosity distinguish it from canonical CCSNe, suggesting that the event is an intermediate-luminosity transient between CCSNe and SLSNe at least in terms of peak luminosity. In comparison to other SNe, we argue that SN 2012aa belongs to a subclass where CSM interaction plays a significant role in powering the SN, at least during the initial stages of evolution.

Keywords
supernovae: general, supernovae: individual: SN 2012aa
National Category
Astronomy, Astrophysics and Cosmology
Identifiers
urn:nbn:se:su:diva-139441 (URN)10.1051/0004-6361/201527947 (DOI)000390797900018 ()
Available from: 2017-02-24 Created: 2017-02-24 Last updated: 2022-02-28Bibliographically approved
Taddia, F., Sollerman, J., Fremling, C., Pastorello, A., Leloudas, G., Fransson, C., . . . Migotto, K. (2015). Metallicity at the explosion sites of interacting transients. Astronomy and Astrophysics, 580, Article ID A131.
Open this publication in new window or tab >>Metallicity at the explosion sites of interacting transients
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2015 (English)In: Astronomy and Astrophysics, ISSN 0004-6361, E-ISSN 1432-0746, Vol. 580, article id A131Article in journal (Refereed) Published
Abstract [en]

Context: Some circumstellar-interacting (CSI) supernovae (SNe) are produced by the explosions of massive stars that have lost mass shortly before the SN explosion. There is evidence that the precursors of some SNe IIn were luminous blue variable (LBV) stars. For a small number of CSI SNe, outbursts have been observed before the SN explosion. Eruptive events of massive stars are named SN impostors (SN IMs) and whether they herald a forthcoming SN or not is still unclear. The large variety of observational properties of CSI SNe suggests the existence of other progenitors, such as red supergiant (RSG) stars with superwinds. Furthermore, the role of metallicity in the mass loss of CSI SN progenitors is still largely unexplored.

Aims: Our goal is to gain insight into the nature of the progenitor stars of CSI SNe by studying their environments, in particular the metallicity at their locations. Methods. We obtain metallicity measurements at the location of 60 transients (including SNe IIn, SNe Ibn, and SN IMs) via emission-line diagnostic on optical spectra obtained at the Nordic Optical Telescope and through public archives. Metallicity values from the literature complement our sample. We compare the metallicity distributions among the different CSI SN subtypes, and to those of other core-collapse SN types. We also search for possible correlations between metallicity and CSI SN observational properties.

Results: We find that SN IMs tend to occur in environments with lower metallicity than those of SNe IIn. Among SNe IIn, SN IIn-L(1998S-like) SNe show higher metallicities, similar to those of SNe IIL/P, whereas long-lasting SNe IIn (1988Z-like) show lower metallicities, similar to those of SN IMs. The metallicity distribution of SNe IIn can be reproduced by combining the metallicity distributions of SN IMs (which may be produced by major outbursts of massive stars like LBVs) and SNe IIP (produced by RSGs). The same applies to the distributions of the normalized cumulative rank (NCR) values, which quantifies the SN association to HII regions. For SNe IIn, we find larger mass-loss rates and higher CSM velocities at higher metallicities. The luminosity increment in the optical bands during SN IM outbursts tend to be larger at higher metallicity, whereas the SN IM quiescent optical luminosities tend to be lower.

Conclusions: The difference in metallicity between SNe IIn and SN IMs indicates that LBVs are only one of the progenitor channels for SNe IIn, with 1988Z-like and 1998S-like SNe possibly arising from LBVs and RSGs, respectively. Finally, even though line-driven winds likely do not primarily drive the late mass-loss of CSI SN progenitors, metallicity has some impact on the observational properties of these transients.

Keywords
supernovae: general, stars: evolution, galaxies: abundances, circumstellar matter, stars: winds, outflows
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-121176 (URN)10.1051/0004-6361/201525989 (DOI)000360020200131 ()
Available from: 2015-10-01 Created: 2015-09-28 Last updated: 2022-02-23Bibliographically approved
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