Artwork

Contenido proporcionado por Nathaniel Garver-Daniels and Ryan S. Lynch. Todo el contenido del podcast, incluidos episodios, gráficos y descripciones de podcast, lo carga y proporciona directamente Nathaniel Garver-Daniels and Ryan S. Lynch o su socio de plataforma de podcast. Si cree que alguien está utilizando su trabajo protegido por derechos de autor sin su permiso, puede seguir el proceso descrito aquí https://es.player.fm/legal.
Player FM : aplicación de podcast
¡Desconecta con la aplicación Player FM !

NANOGrav Podcast

Compartir
 

Series guardadas ("Feed inactivo" status)

When? This feed was archived on November 04, 2022 16:30 (1+ y ago). Last successful fetch was on August 01, 2016 12:10 (7+ y ago)

Why? Feed inactivo status. Nuestros servidores no pudieron recuperar un podcast válido durante un período sostenido.

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage series 1125474
Contenido proporcionado por Nathaniel Garver-Daniels and Ryan S. Lynch. Todo el contenido del podcast, incluidos episodios, gráficos y descripciones de podcast, lo carga y proporciona directamente Nathaniel Garver-Daniels and Ryan S. Lynch o su socio de plataforma de podcast. Si cree que alguien está utilizando su trabajo protegido por derechos de autor sin su permiso, puede seguir el proceso descrito aquí https://es.player.fm/legal.
NANOGrav is a collaboration of observational and theoretical astrophysicists from more than a dozen universities, colleges, and observatories. We include faculty, scientific staff, postdoctoral scholars, graduate students, and undergraduate students, and high school students. We seek to measure gravitational waves--ripples in space-time--by detecting their effect on radio wave signals traveling from pulsars--rapidly rotating neutron stars--to the Earth. Our measurements are most sensitive to gravitational waves with periods of a few years, which corresponds to frequencies of a few nanohertz--hence the "NANO" in our name, "NANOGrav." The strongest sources of such gravitational waves are likely to be binary systems in which two massive black holes orbit one another. Such binary systems form when galaxies merge with one another.
  continue reading

6 episodios

Artwork

NANOGrav Podcast

updated

iconCompartir
 

Series guardadas ("Feed inactivo" status)

When? This feed was archived on November 04, 2022 16:30 (1+ y ago). Last successful fetch was on August 01, 2016 12:10 (7+ y ago)

Why? Feed inactivo status. Nuestros servidores no pudieron recuperar un podcast válido durante un período sostenido.

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage series 1125474
Contenido proporcionado por Nathaniel Garver-Daniels and Ryan S. Lynch. Todo el contenido del podcast, incluidos episodios, gráficos y descripciones de podcast, lo carga y proporciona directamente Nathaniel Garver-Daniels and Ryan S. Lynch o su socio de plataforma de podcast. Si cree que alguien está utilizando su trabajo protegido por derechos de autor sin su permiso, puede seguir el proceso descrito aquí https://es.player.fm/legal.
NANOGrav is a collaboration of observational and theoretical astrophysicists from more than a dozen universities, colleges, and observatories. We include faculty, scientific staff, postdoctoral scholars, graduate students, and undergraduate students, and high school students. We seek to measure gravitational waves--ripples in space-time--by detecting their effect on radio wave signals traveling from pulsars--rapidly rotating neutron stars--to the Earth. Our measurements are most sensitive to gravitational waves with periods of a few years, which corresponds to frequencies of a few nanohertz--hence the "NANO" in our name, "NANOGrav." The strongest sources of such gravitational waves are likely to be binary systems in which two massive black holes orbit one another. Such binary systems form when galaxies merge with one another.
  continue reading

6 episodios

Todos los episodios

×
 
Loading …

Bienvenido a Player FM!

Player FM está escaneando la web en busca de podcasts de alta calidad para que los disfrutes en este momento. Es la mejor aplicación de podcast y funciona en Android, iPhone y la web. Regístrate para sincronizar suscripciones a través de dispositivos.

 

Guia de referencia rapida