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We report the first result of a supernova search program designed to measure the evolution of the supernova rate with redshift. To make the comparison with local rates more significant we copied, as much as possible, the same computation…

We have begun a program to discover high-redshift supernovae ($z \approx$ 0.25--0.5), and study them with follow-up photometry and spectroscopy. We report here our first discovery, a supernova at $z = 0.458$. The photometry for this…

The next galactic core-collapse supernova will deliver a wealth of neutrinos which for the first time we are well-situated to measure. These explosions produce neutrinos with energies between 10 and 100 MeV over a period of tens of seconds.…

Instrumentation and Methods for Astrophysics · Physics 2017-10-03 Justin A. Vasel , Andrey Sheshukov , Alec Habig

We use data on the high-redshift evolution of the size distribution and luminosity function of galaxies to constrain the relationship between their star formation efficiency and starburst lifetime. Based on the derived scaling relations, we…

Cosmology and Nongalactic Astrophysics · Physics 2015-05-20 Stuart Wyithe , Abraham Loeb

A major scientific goal of JWST is to probe the epoch of re-ionization of the Universe at z above 6, and up to 20 and beyond. At these redshifts, galaxies are just beginning to form and the observable objects are early black holes,…

Galaxy clusters trace the largest structures of the Universe and provide ideal laboratories for studying galaxy evolution and cosmology. Clusters with extended X-ray emission have been discovered at redshifts up to z ~ 2.5. Meanwhile, there…

The masses and the evolutionary states of the progenitors of core-collapse supernovae are not well constrained by direct observations. Stellar evolution theory generally predicts that massive stars with initial masses less than about…

Astrophysics · Physics 2009-11-07 S. J. Smartt

We report the discovery of primeval large-scale structures (LSSs) including two proto-clusters in a forming phase at z=5.7. We carried out extensive deep narrow-band imaging in the 1 deg^2 sky of the Subaru/XMM-Newton Deep Field, and…

Several large JWST blank field observing programs have not yet discovered the first galaxies expected to form at $15 \leq z \leq 20$. This has motivated the search for more effective survey strategies that will be able to effectively probe…

In the last three decades, about 50 radio supernovae have been detected as a result of targeted searches of optically discovered supernovae in the local universe. Despite this relatively small number some diversity among them has already…

High Energy Astrophysical Phenomena · Physics 2014-01-08 Atish Kamble , Alicia Soderberg , Edo Berger , Ashley Zauderer , Sayan Chakraborti , Peter Williams

There are at least three reasons for being interested in galaxies at high redshifts that formed most of their stars quite quickly early in the history of the Universe: (1) the ages of their stellar populations can potentially place…

Astrophysics · Physics 2007-05-23 Alan Stockton

While neutrinos are often treated as a background for many dark matter experiments, these particles offer a new avenue for physics: the detection of core-collapse supernovae. Supernovae are extremely energetic, violent and complex events…

Recent observations with JWST have identified several bright galaxy candidates at $z\gtrsim 10$, some of which appear unusually massive (up to $\sim 10^{11}\ \rm M_{\odot}$). Such early formation of massive galaxies is difficult to…

Cosmology and Nongalactic Astrophysics · Physics 2022-10-05 Boyuan Liu , Volker Bromm

We identify a "supernova rate problem": the measured cosmic core-collapse supernova rate is a factor of ~ 2 smaller (with significance ~ 2 sigma) than that predicted from the measured cosmic massive-star formation rate. The comparison is…

Cosmology and Nongalactic Astrophysics · Physics 2011-08-25 Shunsaku Horiuchi , John F. Beacom , Christopher S. Kochanek , Jose L. Prieto , K. Z. Stanek , Todd A. Thompson

We use a sample of 45 core collapse supernovae detected with the Advanced Camera for Surveys on-board the Hubble Space Telescope to derive the core collapse supernova rate in the redshift range 0.1<z<1.3. In redshift bins centered on…

Cosmology and Nongalactic Astrophysics · Physics 2015-06-11 Tomas Dahlen , Louis-Gregory Strolger , Adam G. Riess , Seppo Mattila , Erkki Kankare , Bahram Mobasher

The clustering properties of clusters, galaxies and AGN as a function of redshift are briefly discussed. It appears that extremely red objects at z ~ 1, and objects with J-K > 1.7 and photometric redshifts 2 < z_phot < 4 are highly…

The possibility of detecting proto-galaxies in the UV band is pointed out, assuming that galaxy formation occured at z $\sim 5-6$. It is shown that the diffuse gas in collapsing galaxy sized objects with temperatures $\sim 10^{6\pm0.5}$ K,…

Astrophysics · Physics 2016-06-08 Biman Nath , David Eichler

Observing supernovae (SNe) in the early Universe (z > 3) provides a window into how both galaxies and individual stars have evolved over cosmic time, yet a detailed study of high-redshift stars and SNe has remained difficult due to their…

High Energy Astrophysical Phenomena · Physics 2026-01-22 David A. Coulter , Conor Larison , Justin D. R. Pierel , Seiji Fujimoto , Vasily Kokorev , Joseph F. V. Allingham , Takashi J. Moriya , Matthew Siebert , Yoshihisa Asada , Rachel Bezanson , Maruša Bradač , Gabriel Brammer , John Chisholm , Dan Coe , Pratika Dayal , Michael Engesser , Steven L. Finkelstein , Ori D. Fox , Lukas J. Furtak , Anton M. Koekemoer , Thomas Moore , Minami Nakane , Masami Ouchi , Richard Pan , Robert Quimby , Armin Rest , Johan Richard , Luke Robbins , Louis-Gregory Strolger , Fengwu Sun , Tommaso Treu , Hiroto Yanagisawa , Abdurro'uf , Aadya Agrawal , Ricardo Amorín , Joseph P. Anderson , Rodrigo Angulo , Hakim Atek , Franz E. Bauer , Larry D. Bradley , Volker Bromm , Mateusz Bronikowski , Christopher J. Conselice , Christa DeCoursey , James M. DerKacy , Guillaume Desprez , Suhail Dhawan , Jose M. Diego , Eiichi Egami , Andreas Faisst , Brenda Frye , Sebastian Gomez , Mauro González-Otero , Massimo Griggio , Yuichi Harikane , Kohei Inayoshi , Saurabh W. Jha , Yolanda Jiménez-Teja , Jeyhan S. Kartaltepe , Patrick L. Kelly , Lindsey A. Kwok , Zachary G. Lane , Xiaolong Li , Ivo Lobbe , Paulo A. A. Lopes , Ray A. Lucas , Georgios E. Magdis , Nicholas S. Martis , Jorryt Matthee , Ashish K. Meena , Rohan P. Naidu , Gaël Noirot , Masamune Oguri , Estefania Padilla Gonzalez , Massimo Pascale , Tanja Petrushevska , Massimo Ricotti , Daniel Schaerer , Stefan Schuldt , Melissa Shahbandeh , William Sheu , Koji Shukawa , Akiyoshi Tsujita , Eros Vanzella , Qinan Wang , John Weaver , Robert Williams , Rogier Windhorst , Yi Xu , Yossef Zenati , Adi Zitrin

Galaxy clusters are the most massive gravitationally bound structures in the universe and serve as tracers of the assembly of large-scale structure. Studying their progenitors, proto-clusters, sheds light on the earliest stages of cluster…

Cosmology and Nongalactic Astrophysics · Physics 2026-01-29 Akos Bogdan , Gerrit Schellenberger , Qiong Li , Christopher J. Conselice

The Hubble Frontier Fields (HFF) program combines the capabilities of the Hubble Space Telescope (HST) with the gravitational lensing of massive galaxy clusters to probe the distant Universe to an unprecedented depth. Here, we present the…