Theoretical overview on high-energy emission in microquasars

被引:0
|
作者
Valentí Bosch-Ramon
机构
[1] Max Planck Institut für Kernphysik,
来源
Astrophysics and Space Science | 2007年 / 309卷
关键词
Microquasars; Jets; Gamma-rays: theory; Multiwavelength: theory; Neutrinos;
D O I
暂无
中图分类号
学科分类号
摘要
Microquasar (MQ) jets are sites of particle acceleration and synchrotron emission. Such synchrotron radiation has been detected coming from jet regions of different spatial scales, which for the instruments at work nowadays appear as compact radio cores, slightly resolvedradio jets, or (very) extended structures (e.g. Mirabel and Rodríguez, 1999; Fender, 2001; Corbel et al., 2002). Because of the presence of relativistic particles and dense photon, magnetic and matter fields, these outflows are also the best candidates to generate the very high-energy (VHE) gamma-rays detected coming from two of these objects, LS 5039 and LS I +61 303 (Aharonian, 2005; Aharonian et al., 2006a; and Albert, 2006, respectively), and may be contributing significantly to the X-rays emitted from the MQ core (e.g. Markoff et al., 2001; Bosch-Ramon et al., 2005a). In addition, beside electromagnetic radiation, jets at different scales are producing some amount of leptonic and hadronic cosmic rays (CR), and evidences of neutrino production in these objects may be eventually found. In this work, we review on the different physical processes that may be at work in or related to MQ jets. The jet regions capable to produce significant amounts of emission at different wavelengths have been reduced to the jet base, the jet at scales of the order of the size of the system orbital semi-major axis, the jet middle scales (the resolved radio jets), and the jet termination point. The surroundings of the jet could be sites of multiwavelength emission as well, deserving also an insight. We focus on those scenarios, either hadronic or leptonic, in which it seems more plausible to generate both photons from radio to VHE and high-energy neutrinos. We briefly comment as well on the relevance of MQ as possible contributors to the galactic CR in the GeV–PeV range.
引用
收藏
页码:321 / 331
页数:10
相关论文
共 50 条
  • [31] Microquasars as sources of high energy phenomena
    Mirabel, IF
    HIGH ENERGY PROCESSES AND PHENOMENA IN ASTROPHYSICS, 2003, (214): : 201 - 210
  • [32] High energy neutrinos from microquasars
    Bednarek, W.
    Proceedings of the 29th International Cosmic Ray Conference, Vol 5: OG 2.5, 2.6 & 2.7, 2005, : 67 - 70
  • [33] THEORETICAL APPROACH TO HIGH-ENERGY PION PHENOMENA
    AMATI, D
    STANGHELLINI, A
    TONIN, M
    FUBINI, S
    NUOVO CIMENTO, 1961, 22 (03): : 569 - +
  • [34] Experimental and theoretical high-energy fission studies
    Duijvestijn, MC
    Koning, AJ
    Beijers, JPM
    Van Klinken, J
    Ostendorf, RW
    Hambsch, FJ
    SEMINAR ON FISSION, 2000, : 247 - 255
  • [35] HIGH-ENERGY SPECTROSCOPIES AND HIGH-TC SUPERCONDUCTORS - AN OVERVIEW
    WENDIN, G
    JOURNAL DE PHYSIQUE, 1987, 48 (C-9): : 1157 - 1178
  • [36] ON THE HIGH-ENERGY EMISSION OF THE SHORT GRB 090510
    He, Hao-Ning
    Wu, Xue-Feng
    Toma, Kenji
    Wang, Xiang-Yu
    Meszaros, Peter
    ASTROPHYSICAL JOURNAL, 2011, 733 (01):
  • [37] Magnetar giant flare high-energy emission
    Elenbaas, C.
    Huppenkothen, D.
    Omand, C.
    Watts, A. L.
    Bissaldi, E.
    Caiazzo, I.
    Heyl, J.
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2017, 471 (02) : 1856 - 1872
  • [38] High-energy emission from millisecond pulsars
    Harding, AK
    Usov, VV
    Muslimov, AG
    ASTROPHYSICAL JOURNAL, 2005, 622 (01): : 531 - 543
  • [39] GRAVITON EMISSION IN HIGH-ENERGY HADRON COLLISIONS
    KOBZAREV, IY
    PESHKOV, PI
    ZHURNAL EKSPERIMENTALNOI I TEORETICHESKOI FIZIKI, 1974, 67 (02): : 428 - 432
  • [40] High-energy emission from supernovae and remnants
    Chevalier, RA
    HIGHLY ENERGETIC PHYSICAL PROCESSES AND MECHANISMS FOR EMISSION FROM ASTROPHYSICAL PLASMAS, 2000, (195): : 135 - 142