Published March 1, 2013 | Version v1
Journal article

VARIABLE GAMMA-RAY EMISSION FROM THE CRAB NEBULA: SHORT FLARES AND LONG 'WAVES'

  • 1. INAF/IASF-Roma, I-00133 Roma (Italy)
  • 2. INAF/IASF-Milano, I-20133 Milano (Italy)
  • 3. ENEA Frascati, I-00044 Frascati (Roma) (Italy)
  • 4. INAF/IASF-Bologna, I-40129 Bologna (Italy)
  • 5. INAF - Osservatorio Astronomico di Roma via Frascati 33, I-00040 Monteporzio (Italy)
  • 6. CIFS-Torino, I-10133 Torino (Italy)
  • 7. INAF-Osservatorio Astronomico di Cagliari, localita' Poggio dei Pini, strada 54, I-09012 Capoterra (Italy)
  • 8. ASI Science Data Center, I-00044 Frascati (Roma) (Italy)

Description

Gamma-ray emission from the Crab Nebula has been recently shown to be unsteady. In this paper, we study the flux and spectral variability of the Crab above 100 MeV on different timescales ranging from days to weeks. In addition to the four main intense and day-long flares detected by AGILE and Fermi-LAT between 2007 September and 2012 September, we find evidence for week-long and less intense episodes of enhanced gamma-ray emission that we call 'waves'. Statistically significant 'waves' show timescales of 1-2 weeks, and can occur by themselves or in association with shorter flares. We present a refined flux and spectral analysis of the 2007 September-October gamma-ray enhancement episode detected by AGILE that shows both 'wave' and flaring behavior. We extend our analysis to the publicly available Fermi-LAT data set and show that several additional 'wave' episodes can be identified. We discuss the spectral properties of the 2007 September 'wave'/flare event and show that the physical properties of the 'waves' are intermediate between steady and flaring states. Plasma instabilities inducing 'waves' appear to involve spatial distances l ∼ 1016 cm and enhanced magnetic fields B ∼ (0.5-1) mG. Day-long flares are characterized by smaller distances and larger local magnetic fields. Typically, the deduced total energy associated with the 'wave' phenomenon (Ew ∼ 1042 erg, where Ew is the kinetic energy of the emitting particles) is comparable with that associated to the flares, and can reach a few percent of the total available pulsar spin-down energy. Most likely, flares and waves are the product of the same class of plasma instabilities that we show acting on different timescales and radiation intensities.

Availability note (English)

Available from http://dx.doi.org/10.1088/0004-637X/765/1/52

Additional details

Identifiers

Publishing Information

Journal Title
Astrophysical Journal
Journal Volume
765
Journal Issue
1
Journal Page Range
[10 p.]
ISSN
0004-637X
CODEN
ASJOAB