ANNONS

LISA-uppdrag: Rymdbaserad gravitationsvågsdetektor får ESA:s framgång 

The Laser Interferometer Utrymme Antenna (LISA) mission has received the go ahead of European Utrymme Agency (ESA). This paves the way for developing the instruments and spacecrafts commencing January 2025. The mission is led by ESA and is a result of collaboration between ESA, its Member State plats byråer, NASA, and an international consortium of scientists.   

Scheduled to be launched in 2035, LISA will be the first plats-Baserade gravitations våg observatory dedicated to detection and study of millihertz ripples caused by distortions in the fabric of plats-tid(gravitationsvågor) över universum.  

Unlike the ground based gravitations våg detectors (LIGO, VIRGO, KAGRA, and LIGO India) which detect gravitationsvågor in frequency range of 10 Hz to 1000 Hz, LISA will be designed to detect gravitationsvågor of much longer wavelengths in the low frequency range between 0.1 mHz and 1 Hz.  

Ultralåg frekvens (10-9-10-8 Hz) gravitationsvågor (GWs) with wavelengths from weeks to years from supermassive binary svarta hål can be detected using ground-based Pulsar Timing Arrays (PTAs). However, low frequency gravitationsvågor (GWs) with frequency between 0.1 mHz and 1 Hz can neither be detected by LIGO nor by Pulsar Timing Arrays (PTAs) – the wavelength of these GWs is too long for LIGO and too short for PTAs to detect. Hence, the need for plats-based GW detector.  

LISA will be a constellation of three spacecrafts in accurate equilateral triangle formation in space. Each side of the triangle will be 2.5 million km long. This formation (of the three spacecrafts) will bana Sun in an Earth-trailing heliocentric bana between 50 and 65 million km from Earth while maintaining a mean inter-spacecraft separation distance of 2.5 million km. This space-based configuration makes LISA an extremely large detector to study low frequency gravitationsvågor that ground-based detectors can not.  

For detection of GWs, LISA will use pairs of test masses (solid gold-platinum cubes) free-floating in special chambers at the heart of each spacecraft. Gravitations ripples will make extremely small changes in the distances between test masses in the spacecrafts which will be measured through laser interferometry. As demonstrated by LISA Pathfinder mission, this technology is capable of measuring changes in distances to a few billionths of a millimetre. 

LISA will detect GWs caused by merger of supermassive svarta hål at the centre of galaxies thus will shed light on evolution of galaxies. The mission should also detect the predicted gravitational 'ringande' bildades i de första ögonblicken av universum under de första sekunderna efter den stora smällen.  

*** 

Referenser:  

  1. ESA. Nyheter - Att fånga rymdtidens krusningar: LISA får klartecken. Upplagd 25 januari 2024. Finns på https://www.esa.int/Science_Exploration/Space_Science/Capturing_the_ripples_of_spacetime_LISA_gets_go-ahead 
  1. NASA. LISA. Tillgänglig på https://lisa.nasa.gov/ 
  1. Pau Amaro-Seoane et al. 2017. Laser Interferometer Utrymme Antenna. Preprint arXiv. DOI: https://doi.org/10.48550/arXiv.1702.00786  
  1. Baker et al. 2019. The Laser Interferometer Utrymme Antenna: Unveiling the Millihertz Gravitational Wave Sky. Preprint arXiv. DOI: https://doi.org/10.48550/arXiv.1907.06482 

*** 

Philippe Jetzer, universitetet i Zürich

***

Löser universums största mysterier – med Gianfranco Bertone


***

Umesh Prasad
Umesh Prasad
Vetenskapsjournalist | Grundare redaktör, Scientific European magazine

Prenumerera på vårt nyhetsbrev

Uppdateras med alla de senaste nyheterna, erbjudanden och specialmeddelanden.

Mest populära artiklar

Den övre delen av statyn av Ramesses II avslöjad 

Ett team av forskare under ledning av Basem Gehad från...

Oceaniska inre vågor påverkar den biologiska mångfalden i djuphavet

Dolda, oceaniska inre vågor har visat sig spela...

Vintergatan: En mer detaljerad look av varpen

Forskarna från Sloan Digital Sky-undersökningen har...
- Annons -
94,476FläktarTycka om
47,680följareFölj
1,772följareFölj
30abonnenterPrenumerera