Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Euclid: Searching for pair-instability supernovae with the Deep Survey

View through CrossRef
Pair-instability supernovae are theorized supernovae that have not yet been observationally confirmed. They are predicted to exist in low-metallicity environments. Because overall metallicity becomes lower at higher redshifts, deep near-infrared transient surveys probing high-redshift supernovae are suitable to discover pair-instability supernovae. The Euclid satellite, which is planned launch in 2023, has a near-infrared wide-field instrument that is suitable for a high-redshift supernova survey. The Euclid Deep Survey is planned to make regular observations of three Euclid Deep Fields (40 deg2 in total) spanning Euclid’s six-year primary mission period. While the observations of the Euclid Deep Fields are not frequent, we show that the predicted long duration of pair-instability supernovae would allow us to search for high-redshift pair-instability supernovae with the Euclid Deep Survey. Based on the current observational plan of the Euclid mission, we conduct survey simulations in order to estimate the expected numbers of pair-instability supernova discoveries. We find that up to several hundred pair-instability supernovae at z ≲ 3.5 can be discovered within the Euclid Deep Survey. We also show that pair-instability supernova candidates can be efficiently identified by their duration and color, which can be determined with the current Euclid Deep Survey plan. We conclude that the Euclid mission can lead to the first confirmation of pair-instability supernovae if their event rates are as high as those predicted by recent theoretical studies. We also update the expected numbers of superluminous supernova discoveries in the Euclid Deep Survey based on the latest observational plan.
Title: Euclid: Searching for pair-instability supernovae with the Deep Survey
Description:
Pair-instability supernovae are theorized supernovae that have not yet been observationally confirmed.
They are predicted to exist in low-metallicity environments.
Because overall metallicity becomes lower at higher redshifts, deep near-infrared transient surveys probing high-redshift supernovae are suitable to discover pair-instability supernovae.
The Euclid satellite, which is planned launch in 2023, has a near-infrared wide-field instrument that is suitable for a high-redshift supernova survey.
The Euclid Deep Survey is planned to make regular observations of three Euclid Deep Fields (40 deg2 in total) spanning Euclid’s six-year primary mission period.
While the observations of the Euclid Deep Fields are not frequent, we show that the predicted long duration of pair-instability supernovae would allow us to search for high-redshift pair-instability supernovae with the Euclid Deep Survey.
Based on the current observational plan of the Euclid mission, we conduct survey simulations in order to estimate the expected numbers of pair-instability supernova discoveries.
We find that up to several hundred pair-instability supernovae at z ≲ 3.
5 can be discovered within the Euclid Deep Survey.
We also show that pair-instability supernova candidates can be efficiently identified by their duration and color, which can be determined with the current Euclid Deep Survey plan.
We conclude that the Euclid mission can lead to the first confirmation of pair-instability supernovae if their event rates are as high as those predicted by recent theoretical studies.
We also update the expected numbers of superluminous supernova discoveries in the Euclid Deep Survey based on the latest observational plan.

Related Results

Toward an inner connection of SNe Ic, SLSNe Ic, XRF connected SNe, SNe Ic-BL, and GRB connected SNe
Toward an inner connection of SNe Ic, SLSNe Ic, XRF connected SNe, SNe Ic-BL, and GRB connected SNe
AbstractType Ic supernovae can be classified as normal supernovae Ic, type Ic super-luminous supernovae, X-ray flash-connected supernovae, broad-line supernovae Ic, and gamma-ray b...
Euclid preparation
Euclid preparation
Context. The European Space Agency’s Euclid mission is one of a raft of forthcoming large-scale cosmology surveys that will map the large-scale structure in the Universe with unpre...
Constraining High-energy Neutrino Emission from Supernovae with IceCube
Constraining High-energy Neutrino Emission from Supernovae with IceCube
Abstract Core-collapse supernovae are a promising potential high-energy neutrino source class. We test for correlation between seven years of IceCube neutrino data a...
Pelatihan Searching dan Drafting Paten Di Perguruan Tinggi Muhammadiyah Mataram
Pelatihan Searching dan Drafting Paten Di Perguruan Tinggi Muhammadiyah Mataram
Dalam pelaksanaan pengabdian ini kami memberikan pemahaman dan pelatihan akan searching dan drafting paten sesuai kebutuhan dari peserta. Untuk searching kami berikan dengan menunj...
Observational Data on Novae and Supernovae
Observational Data on Novae and Supernovae
The first half of the paper contains a discussion of the chemical composition of the envelopes of supernovae for the period close to light maximum. The principal conclusions are: T...
Discovering Supernovae at the Epoch of Reionization with the Nancy Grace Roman Space Telescope
Discovering Supernovae at the Epoch of Reionization with the Nancy Grace Roman Space Telescope
Abstract Massive stars play critical roles for the reionization of the universe. Individual massive stars at the reionization epoch (z > 6) are too faint to obser...
Charles Peirce and Bertrand Russell on Euclid
Charles Peirce and Bertrand Russell on Euclid
Both Charles Sanders Peirce (1839–1914) and Bertrand Russell (1872–1970) held that Euclid’s proofs in geometry were fundamentally flawed, and based largely on mathematical intuitio...

Back to Top