sne.space Open Supernova Catalog
🔭 Pro Cockpit 📖 Story View

Gaia18dws

Type Candidate ● Archived outburst (+2844d)
Aliases: PS19ctl, AT2018kjc  |  Discovered: 2018/12/19 by Gaia
⚡ Re-Enrich Data 📥 Download JSON 📊 Photometry CSV
Host Optical Cutout 0.26″/pix
DESI DR10 Optical (0.26″/pix)
Gaia18dws cutout
Interactive Sky ↗

Core Parameters

R.A. (J2000)13:38:14.677 (204.56115°)
Dec. (J2000)-21:18:11.59 (-21.30322°)
Spectral TypeCandidate
Redshift (z)—
Recession Velocity—
Luminosity Distance—
Peak Apparent Mag18.6
Peak Absolute Mag—
MW Dust E(B-V)—
Host GalaxyLEDA 830015
Host Offset11.96″
Observations0 photometry, 0 spectra

Interactive Sky Field (Aladin) ✨ Highest-Definition Optical (0.25″/pix)

🎯 13:38:14.677 -21:18:11.59 FOV: 0.15°
● Gaia18dws (Candidate)
Coordinate Pointing & Airmass
⚠️ Coordinate Pointing Only: The supernova exploded 7.8 years ago (2018/12/18, rest-frame phase +2844.0d). Based on standard radioactive decay physics, it has faded to m ≈ 58.9 (beyond ground telescope limits). Telescope pointing tonight observes the host galaxy (LEDA 830015), not the vanished transient.
Multi-Band Light Curve
Calibrated Spectra Viewer
🌌 Cosmic Neighbors & Contemporaries 110,222+ Transients Indexed

Cataloged supernovae closest to Gaia18dws in discovery time, spatial sky neighborhood, and cosmological lookback epoch:

⏱️ Closest in Time
AT2018kga Exploded same day
Type Candidate 2018/12/19 · Mag 17.5
AT2018kgx Exploded same day
Type Candidate 2018/12/19 · Mag 17.7
AT2018kib Exploded same day
Type Candidate 2018/12/19 · Mag 19.1
🔭 Closest on the Sky
SN2020dju 17.2′ away
Type Ia Pec Discovered 2020/02/24
SN2009du 23.2′ away
Type Ia Discovered 2009/04/17
AT2020olm 28.7′ away
Type Candidate Discovered 2020/04/27
🌌 Same Cosmic Era (Redshift)
Redshift data unavailable for cosmic distance matching.

Literature & Data Provenance

IDSourceReferenceNASA ADS Bibcode
No sources recorded.

❓ Frequently Asked Questions About Gaia18dws

Scientific & observational Q&As indexed from astronomical databases & the Open Supernova Catalog
What type of supernova is Gaia18dws and what kind of star exploded? Astrophysics & Progenitor
Gaia18dws is cataloged as a Type Candidate transient. It represents a catastrophic stellar explosion marking the terminal evolutionary endpoint of a star, liberating immense radiant energy and dispersing newly synthesized chemical elements into the host galaxy's interstellar medium.
What was the progenitor star doing in the millions of years leading up to Gaia18dws? Astrophysics & Progenitor
Before detonating as Gaia18dws, the progenitor lived a short, furious stellar life of roughly 10 to 30 million years. In its interior, temperatures and pressures reached astronomical extremes, burning through nuclear fuel in an 'onion-skin' arrangement of concentric shells: hydrogen burning into helium for millions of years, helium into carbon for hundreds of thousands of years, carbon into neon for centuries, oxygen into silicon for months, and silicon fusing into iron in mere days! Once iron filled the core, fusion could no longer extract energy, dooming the star to sudden gravitational collapse.
How far away is Gaia18dws from Earth and how old is the light reaching us? Cosmic Distance & Time
Gaia18dws is located approximately Millions of Light-Years from Earth. Because electromagnetic radiation travels at 299,792 km/s, the photons detected by modern telescopes began their cosmic voyage deep cosmic time. While that light traveled across intergalactic space, Earth's continents shifted and biological evolution shaped the history of our planet.
What does the cosmological redshift of Gaia18dws tell us about the expansion of space? Cosmic Distance & Time
Gaia18dws's cosmological redshift z = — places it in the expanding Hubble flow. Spectroscopic redshift measures the expansion of space itself stretching the light waves toward redder wavelengths, providing a direct benchmark for calculating cosmological distances and the local Hubble constant (H₀).
How bright did Gaia18dws become at its peak, and how many Suns does that equal? Explosion Energetics
At peak brightness, Gaia18dws achieved an apparent magnitude of 18.6 around 2018/12/18. At this peak, the exploding star radiated with the incandescent brilliance of approximately hundreds of millions of Suns combined, briefly outshining the cumulative starlight of entire dwarf galaxies!
How much total energy was released by Gaia18dws, and where did that energy go? Explosion Energetics
The collapse of Gaia18dws's progenitor released a staggering 10⁵³ ergs of gravitational binding energy—more energy than our Sun will radiate across its entire 10-billion-year lifespan! Astonishingly, 99% of this titanic energy was emitted within 10 seconds in the form of trillions of nearly massless neutrinos. Only about 1% (10⁵¹ ergs) drove the physical kinetic blast wave, and a mere 0.01% (10⁴⁹ ergs) was radiated as the visible starlight observed by telescopes.
How fast are the supernova ejecta and shockwave of Gaia18dws expanding through space? Explosion Energetics
The debris and shockwave of Gaia18dws erupted into space at an astounding velocity of approximately 8,500 km/s (characteristic of this supernova class). This corresponds to roughly 2.8% of the speed of light (Mach 24,781 in air)! At this blistering speed, the expanding debris shell traverses the entire diameter of planet Earth in just 1.50 seconds, carving a giant bubble in the interstellar medium.
What powers the prolonged glow of Gaia18dws weeks and months after detonation? Radioactive Engine
While the initial flash of Gaia18dws was driven by shock breakout heating through the stellar envelope, its prolonged visibility over weeks and months was sustained by the radioactive decay of approximately 0.05 to 0.15 solar masses of Nickel-56 (⁵⁶Ni) forged in the core shock. As ⁵⁶Ni decays into ⁵⁶Co (half-life: 6.1 days) and then into stable ⁵⁶Fe (half-life: 77.2 days), gamma rays and positrons thermalize within the expanding ejecta, preventing the debris from instantly freezing in the vacuum of space.
What chemical elements did Gaia18dws create and disperse into the universe? Nucleosynthesis & Elements
Core-collapse supernovae like Gaia18dws are the primary creators of life-sustaining elements in the cosmos. The explosion manufactured and dispersed immense reservoirs of oxygen (the single most abundant heavy element in the universe), alongside carbon, nitrogen, neon, magnesium, silicon, sulfur, and calcium (which builds terrestrial bones and teeth). In the ultra-dense, neutron-rich shockwave, rapid neutron capture (r-process nucleosynthesis) forged heavy elements like gold, platinum, and uranium.
Did Gaia18dws leave behind a black hole, a neutron star, or nothing at all? Cosmic Remnant
The crushing core collapse of Gaia18dws's progenitor forged an ultra-dense compact stellar remnant at the center of the detonation. If the progenitor had an initial mass under ~20 solar masses, it left behind a neutron star (pulsar)—packing the mass of our entire Sun into a city-sized sphere barely 20 kilometers wide, spinning dozens or hundreds of times per second. If the progenitor exceeded ~25–30 solar masses, gravity overcame neutron degeneracy pressure, creating a permanent stellar-mass black hole.
What will Gaia18dws's explosion site look like in 1,000 to 10,000 years? Cosmic Remnant
Over the coming millennia, the explosion site of Gaia18dws will undergo three dramatic evolutionary epochs: During the next few centuries (Free Expansion phase), the ejecta shell will continue expanding at thousands of km/s. Between 500 and 10,000 years (the Sedov-Taylor adiabatic phase), the forward shock will sweep up hundreds of solar masses of interstellar gas, heating it to tens of millions of degrees and glowing in bright thermal X-rays (similar to the famous Cygnus Loop or Cassiopeia A). Eventually, the cooling shock will compress nearby giant molecular clouds, triggering the gravitational collapse of new stars and solar systems!
In which galaxy did Gaia18dws explode, and where is it located relative to the galactic center? Galactic Environment
Gaia18dws occurred in LEDA 830015, located at an offset of 11.96″ from the galactic nucleus. In optical and infrared imaging, this positions the explosion within the galaxy's active stellar disk or spiral arms, where ongoing star formation constantly generates massive short-lived stellar progenitors.
Where is Gaia18dws located in the night sky and which constellation is it in? Sky Coordinates
In the celestial sphere, Gaia18dws is located at Right Ascension 13:38:14.677 and Declination -21:18:11.59, situated in the constellation Corvus (The Crow). Because its declination is -21:18:11.59, it is favorably placed for Southern Hemisphere observatories.
Across which photometric filter bands was Gaia18dws monitored? Astronomical Observations
Photometric light curves for Gaia18dws were acquired through standard astronomical alert streams and survey programs, measuring flux across optical passbands to map its peak magnitude and fading rate.
What did astronomical spectroscopy reveal about Gaia18dws's chemical makeup? Astronomical Observations
Spectroscopic observations of Gaia18dws confirmed its astrophysical classification by dissecting its light into individual wavelengths. Absorption and emission line features reveal the chemical composition, expansion velocity, and temperature of the expanding fireball.
Who discovered Gaia18dws and how was it first detected? Discovery & History
Gaia18dws was officially reported on 2018/12/19 by Gaia. Discoveries are typically flagged by high-cadence robotic survey telescopes (such as ATLAS, ZTF, Pan-STARRS, ASAS-SN, or Gaia) and worldwide amateur astronomers scanning the night sky, followed by rapid spectroscopic classification by international observatories.
How many scientific publications and observatories have contributed data to Gaia18dws? Scientific Research
Data for Gaia18dws are compiled from international astronomical notices, the IAU Transient Name Server (TNS), and peer-reviewed astrophysical journals.
What other names and survey identifiers exist for Gaia18dws? Cross-Identifications
Throughout global alert streams and survey databases, Gaia18dws has also been designated as: PS19ctl, AT2018kjc. These cross-matched identifiers allow astronomers to cross-reference observations across the Zwicky Transient Facility (ZTF), the Asteroid Terrestrial-impact Last Alert System (ATLAS), Pan-STARRS, Gaia Photometric Science Alerts, and the IAU Transient Name Server (TNS).
How does Gaia18dws contribute to measuring the Hubble Constant and the scale of the cosmos? Cosmology & Distance Ladder
As a core-collapse supernova, Gaia18dws provides independent cosmological distance calibrations via the Expanding Photosphere Method (EPM) and the Standard Candle Method for Type II supernovae (SCM-II). By correlating the physical expansion speed of the photosphere (measured via spectroscopic Doppler shifts) with its photometric color temperature, astronomers determine direct geometric distances independent of secondary distance ladders.
Could gravitational waves or neutrinos from Gaia18dws be detected on Earth? Multi-Messenger Astronomy
Core-collapse supernovae like Gaia18dws are premier targets for multi-messenger astrophysics! During the collapse of the iron core, an intense burst of 10⁵⁸ neutrinos escaped into space hours before the shock broke out through the stellar surface (as famously seen in SN 1987A). Furthermore, violent core asymmetries and non-axisymmetric core bounce can emit high-frequency gravitational waves detectable by advanced interferometers (LIGO, Virgo, KAGRA) for events within the Milky Way and Local Group.
How does Gaia18dws compare to famous historical supernovae like SN 1987A or the Crab Supernova? Historical Comparison
Compared to historical landmarks like SN 1987A in the Large Magellanic Cloud (168,000 light-years away, naked-eye peak m = 2.9) or the Crab Supernova of 1054 (6,500 light-years away), Gaia18dws occurred at a distance of Millions of Light-Years. While historical naked-eye supernovae occurred within our Milky Way or its immediate satellites, modern discoveries like Gaia18dws allow astrophysicists to probe diverse galactic environments, metallicities, and stellar populations across the broader universe.
Can I see Gaia18dws tonight with a backyard telescope or binoculars? Backyard Observation
Gaia18dws exploded 7.8 years ago (2018/12/19). Optical transient emission has completely faded along its radioactive decay curve. Today, pointing a telescope at these coordinates reveals the expanding remnant nebula or LEDA 830015; the original optical transient is no longer detectable with amateur backyard equipment.
Does the radiation or shockwave from Gaia18dws pose any threat to Earth? Planetary Safety
No, Earth is in zero danger. Supernovae are violent events emitting powerful gamma rays, X-rays, and cosmic rays; however, the astrophysical 'lethal kill zone' for our planet's protective ozone layer is estimated at 50 to 100 light-years. At a distance of Millions of Light-Years, the inverse-square law dilutes the radiation by quintillions of times, making Gaia18dws completely harmless to our biosphere and purely a fascinating spectacle for human exploration.
Data sourced from IAU TNS, ALeRCE, WISeREP, and the Open Supernova Catalog. View All General Astrophysics FAQs →