Literature DB >> 20054391

A lower limit of 50 microgauss for the magnetic field near the Galactic Centre.

Roland M Crocker1, David I Jones, Fulvio Melia, Jürgen Ott, Raymond J Protheroe.   

Abstract

The amplitude of the magnetic field near the Galactic Centre has been uncertain by two orders of magnitude for several decades. On a scale of approximately 100 parsecs (pc), fields of approximately 1,000 microgauss (microG; refs 1-3) have been reported, implying a magnetic energy density more than 10,000 times stronger than typical for the Galaxy. Alternatively, the assumption of pressure equilibrium between the various phases of the Galactic Centre interstellar medium (including turbulent molecular gas, the contested 'very hot' plasma, and the magnetic field) suggests fields of approximately 100 microG over approximately 400 pc size scales. Finally, assuming equipartition, fields of only approximately 6 microG have been inferred from radio observations for 400 pc scales. Here we report a compilation of previous data that reveals a downward break in the region's non-thermal radio spectrum (attributable to a transition from bremsstrahlung to synchrotron cooling of the in situ cosmic-ray electron population). We show that the spectral break requires that the Galactic Centre field be at least approximately 50 microG on 400 pc scales, lest the synchrotron-emitting electrons produce too much gamma-ray emission, given other existing constraints. Other considerations support a field of 100 microG, implying that over 10% of the Galaxy's magnetic energy is contained in only less than or approximately 0.05% of its volume.

Year:  2010        PMID: 20054391     DOI: 10.1038/nature08635

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  3 in total

1.  Molecular loops in the galactic center: evidence for magnetic flotation.

Authors:  Yasuo Fukui; Hiroaki Yamamoto; Motosuji Fujishita; Natsuko Kudo; Kazufumi Torii; Satoshi Nozawa; Kunio Takahashi; Ryoji Matsumoto; Mami Machida; Akiko Kawamura; Yoshinori Yonekura; Norikazu Mizuno; Toshikazu Onishi; Akira Mizuno
Journal:  Science       Date:  2006-10-06       Impact factor: 47.728

2.  Discovery of very-high-energy gamma-rays from the Galactic Centre ridge.

Authors:  F Aharonian; A G Akhperjanian; A R Bazer-Bachi; M Beilicke; W Benbow; D Berge; K Bernlöhr; C Boisson; O Bolz; V Borrel; I Braun; F Breitling; A M Brown; P M Chadwick; L-M Chounet; R Cornils; L Costamante; B Degrange; H J Dickinson; A Djannati-Ataï; L O'C Drury; G Dubus; D Emmanoulopoulos; P Espigat; F Feinstein; G Fontaine; Y Fuchs; S Funk; Y A Gallant; B Giebels; S Gillessen; J F Glicenstein; P Goret; C Hadjichristidis; D Hauser; M Hauser; G Heinzelmann; G Henri; G Hermann; J A Hinton; W Hofmann; M Holleran; D Horns; A Jacholkowska; O C de Jager; B Khélifi; S Klages; Nu Komin; A Konopelko; I J Latham; R Le Gallou; A Lemière; M Lemoine-Goumard; N Leroy; T Lohse; A Marcowith; J M Martin; O Martineau-Huynh; C Masterson; T J L McComb; M de Naurois; S J Nolan; A Noutsos; K J Orford; J L Osborne; M Ouchrif; M Panter; G Pelletier; S Pita; G Pühlhofer; M Punch; B C Raubenheimer; M Raue; J Raux; S M Rayner; A Reimer; O Reimer; J Ripken; L Rob; L Rolland; G Rowell; V Sahakian; L Saugé; S Schlenker; R Schlickeiser; C Schuster; U Schwanke; M Siewert; H Sol; D Spangler; R Steenkamp; C Stegmann; J-P Tavernet; R Terrier; C G Théoret; M Tluczykont; C van Eldik; G Vasileiadis; C Venter; P Vincent; H J Völk; S J Wagner
Journal:  Nature       Date:  2006-02-09       Impact factor: 49.962

3.  Discrete sources as the origin of the Galactic X-ray ridge emission.

Authors:  M Revnivtsev; S Sazonov; E Churazov; W Forman; A Vikhlinin; R Sunyaev
Journal:  Nature       Date:  2009-04-30       Impact factor: 49.962

  3 in total
  2 in total

1.  Giant magnetized outflows from the centre of the Milky Way.

Authors:  Ettore Carretti; Roland M Crocker; Lister Staveley-Smith; Marijke Haverkorn; Cormac Purcell; B M Gaensler; Gianni Bernardi; Michael J Kesteven; Sergio Poppi
Journal:  Nature       Date:  2013-01-03       Impact factor: 49.962

2.  Acceleration of petaelectronvolt protons in the Galactic Centre.

Authors: 
Journal:  Nature       Date:  2016-03-16       Impact factor: 49.962

  2 in total

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