Neutrino astronomy

Neutrino Array Radio Calibration

The Neutrino Array Radio Calibration (NARC) experiment was the successor to the Radio Ice Cherenkov Experiment (RICE) which served as a testbed for future development of an eventual large-scale neutrino radio-detection array. NARC involved detecting ultra high energy electron neutrinos through their interactions with ice molecules in the Antarctic icecap, based on the principle of radio coherence. Experimentally, the goal was to detect and measure long-wavelength (radiofrequency) pulses resulting from this interaction. The experiment ended 2012 (end of data-taking 2010). The experiment is succeeded by the Askaryan Radio Array (ARA) experiment. (Wikipedia).

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Animation: Neutrino Detection in Liquid-Argon Time Projection Chamber

A short animation to show how a Liquid-Argon Time Projection Chamber can detect a neutrino based upon the neutrino's interaction with an argon atom.

From playlist Neutrinos

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How do we detect neutrinos? | Even Bananas 04

Hold on to your hats! Today we’re talking about how to see the invisible – that’s right, it’s detector time. First up, the bizarre story of the world’s first neutrino detector: Project Poltergeist. Then, MicroBooNE scientist Katrina Miller shows us the materials used to build modern detect

From playlist Neutrinos

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How do you detect a neutrino?

The elusive neutrino is the most difficult to detect of the particles of the standard model. However the story is more complex than that. When a neutrino actually interacts, it is easy to detect. However neutrinos interact only rarely. In this video, Fermilab’s Dr. Don Lincoln explains

From playlist Neutrinos

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How do experimenters detect neutrinos?

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From playlist Science Unplugged: Neutrinos

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NOvA: Building a Next Generation Neutrino Experiment

The NOvA neutrino experiment is searching for the answers to some of the most fundamental questions of the universe. This video documents how collaboration between government research institutions like Fermilab, academia and industry can create one of the largest neutrino detectors in the

From playlist Neutrinos

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A.N.A.G.R.A.M. - Unlocked Patreon Bonus Episode | SciShow Tangents Podcast

Did you know that you can go to Patreon.com/SciShowTangents to become a Patron of the show and get cool stuff, like bonus episodes! See what you've been missing this week as we bring you an unlocked bonus episode featuring a devious game by Sam! Want more SciShow Tangents? Check out hundr

From playlist This Week in SciShow (Aug 27th - Sept 2)

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Interview: Jack Burns and the Lunar FARSIDE Telescope

This week I talk to Dr. Jack Burns, the Principle Investigator for the Lunar FARSIDE telescope. This would be a radio telescope installed on the far side of the Moon that would be capable of observing the first stars and black holes during the Dark Ages and Epoch of Reionization. https://

From playlist Interviews

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What are Neutrinos?

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From playlist Science Unplugged: Neutrinos

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ICARUS Neutrino Detector Installation at Fermilab

The ICARUS detector, one of the largest liquid-argon neutrino hunters in the world, makes the last leg of its international journey into its new home at the U.S. Department of Energy’s Fermi National Accelerator Laboratory. The detector was shipped to Fermilab in two modules in 2017. One y

From playlist Detectors and Accelerators

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Michio Kaku: What If Einstein Is Wrong? | Big Think

What if Einstein is WRONG? New videos every week: https://bigth.ink Join Big Think Edge for exclusive video lessons from top thinkers and doers: https://bigth.ink/Edge ---------------------------------------------------------------------------------- Dr. Kaku addresses the question "What

From playlist Inside the mind of Albert Einstein | Big Think

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Observing Cosmic Dawn Through 21-cm Signal by Saurabh singh

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From playlist LESS TRAVELLED PATH TO THE DARK UNIVERSE

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Astrophysical neutrinos and how to find them – with Jenni Adams

The aptly named IceCube collaboration, a huge telescope buried in the crystal clear ice of Antarctica, has been running for 10 years. It’s there to detect neutrinos, an almost undetectable particle. Watch the Q&A: https://youtu.be/dWRlMEso_2E Join Jenni Adams as she discusses how these ne

From playlist Ri Talks

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P Sreekumar: Astrosat: Project and science

PROGRAM: NUMERICAL RELATIVITY DATES: Monday 10 Jun, 2013 - Friday 05 Jul, 2013 VENUE: ICTS-TIFR, IISc Campus, Bangalore DETAL Numerical relativity deals with solving Einstein's field equations using supercomputers. Numerical relativity is an essential tool for the accurate modeling of a wi

From playlist Numerical Relativity

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Irene Di Palma - A Machine Learning Application in Multi-Messenger Astrophysics - IPAM at UCLA

Recorded 7 October 2021. Irene Di Palma of the Sapienza University of Rome presents "A Machine Learning Application in Multi-Messenger Astrophysics" at IPAM's Workshop I: Computational Challenges in Multi-Messenger Astrophysics. Abstract: The detection of gravitational waves from core-coll

From playlist Workshop: Computational Challenges in Multi-Messenger Astrophysics

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Dark Matter Direct Detection: Status,Results and Future Plans by Laura Baudis

DISCUSSION MEETING HUNTING SUSY @ HL-LHC (ONLINE) ORGANIZERS Satyaki Bhattacharya (SINP, India), Rohini Godbole (IISc, India), Kajari Majumdar (TIFR, India), Prolay Mal (NISER-Bhubaneswar, India), Seema Sharma (IISER-Pune, India), Ritesh K. Singh (IISER-Kolkata, India) and Sanjay Kumar S

From playlist HUNTING SUSY @ HL-LHC (ONLINE) 2021

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Tracking Satellites in Orbit - Part 1

We've built a couple radio telescope on this channel over the years. The first took a picture of the sky in microwave frequencies and the second took a picture of wifi signals in a building. This time we're scaling up both the size of the telescope and the quality and utility of the build.

From playlist Radio and Radio Astronomy

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Nathan Whitehorn - Neutrino in a haystack: computational challenges for IceCube Neutrino Observatory

Recorded 01 December 2021. Nathan Whitehorn of Michigan State University presents "Finding a neutrino in a haystack: computational challenges for the IceCube Neutrino Observatory" at IPAM's Workshop IV: Big Data in Multi-Messenger Astrophysics. Abstract: Neutrinos provide a unique view of

From playlist Workshop: Big Data in Multi-Messenger Astrophysics

Related pages

Coherence (physics) | Neutrino | Askaryan Radio Array