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zadetkov: 589
1.
  • Core-collapse supernovae in... Core-collapse supernovae in dense environments – particle acceleration and non-thermal emission
    Brose, R; Sushch, I; Mackey, J Monthly notices of the Royal Astronomical Society, 08/2022, Letnik: 516, Številka: 1
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    ABSTRACT Supernova remnants (SNRs) are known to accelerate cosmic rays from the detection of non-thermal emission in radio waves, X-rays, and gamma-rays. However, the ability to accelerate cosmic ...
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2.
  • Morphology of supernova rem... Morphology of supernova remnants and their halos
    Brose, R.; Pohl, M.; Sushch, I. Astronomy and astrophysics (Berlin), 10/2021, Letnik: 654
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    Context. Supernova remnants (SNRs) are known to accelerate particles to relativistic energies, on account of their nonthermal emission. The observational progress from radio to gamma-ray observations ...
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3.
  • Cosmic-ray acceleration and... Cosmic-ray acceleration and escape from post-adiabatic supernova remnants
    Brose, R.; Pohl, M.; Sushch, I. ... Astronomy and astrophysics (Berlin), 02/2020, Letnik: 634
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    Context. Supernova remnants are known to accelerate cosmic rays on account of their nonthermal emission of radio waves, X-rays, and gamma rays. Although there are many models for the acceleration of ...
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4.
  • Transport of magnetic turbu... Transport of magnetic turbulence in supernova remnants
    Brose, R.; Telezhinsky, I.; Pohl, M. Astronomy and astrophysics (Berlin), 09/2016, Letnik: 593
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    Context. Supernova remnants are known as sources of Galactic cosmic rays for their nonthermal emission of radio waves, X-rays, and gamma rays. However, the observed soft broken power-law spectra are ...
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5.
  • Magneto-hydrodynamic simula... Magneto-hydrodynamic simulations of young supernova remnants and their energy-conversion phase
    Petruk, O; Kuzyo, T; Orlando, S ... Monthly notices of the Royal Astronomical Society, 07/2021, Letnik: 505, Številka: 1
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    ABSTRACT Supernova remnants (SNRs) can be rich sources of information on the parent SN (supernova) explosion. Thus, investigating the transition from the phase of SN to that of SNR can be crucial to ...
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6.
  • Nonthermal emission from th... Nonthermal emission from the reverse shock of the youngest Galactic supernova remnant G1.9+0.3
    Brose, R.; Sushch, I.; Pohl, M. ... Astronomy and astrophysics (Berlin), 07/2019, Letnik: 627
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    Context. The youngest Galactic supernova remnant G1.9+0.3 is an interesting target for next-generation gamma-ray observatories. So far, the remnant is only detected in the radio and the X-ray bands, ...
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7.
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8.
  • Mysterious odd radio circle... Mysterious odd radio circle near the large magellanic cloud – an intergalactic supernova remnant?
    Filipović, Miroslav D; Payne, J L; Alsaberi, R Z E ... Monthly notices of the Royal Astronomical Society, 03/2022, Letnik: 512, Številka: 1
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    ABSTRACT We report the discovery of J0624–6948, a low-surface brightness radio ring, lying between the Galactic Plane and the large magellanic cloud (LMC). It was first detected at 888 MHz with the ...
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9.
  • Measurement of the Extragal... Measurement of the Extragalactic Background Light Spectral Energy Distribution with VERITAS
    Abeysekara, A. U.; Archer, A.; Benbow, W. ... The Astrophysical journal, 11/2019, Letnik: 885, Številka: 2
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    The extragalactic background light (EBL), a diffuse photon field in the optical and infrared range, is a record of radiative processes over the universe's history. Spectral measurements of blazars at ...
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10.
  • VERITAS Observations of the... VERITAS Observations of the Galactic Center Region at Multi-TeV Gamma-Ray Energies
    Adams, C. B.; Benbow, W.; Brill, A. ... The Astrophysical journal, 06/2021, Letnik: 913, Številka: 2
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    Abstract The Galactic Center (GC) region hosts a variety of powerful astronomical sources and rare astrophysical processes that emit a large flux of nonthermal radiation. The inner 375 pc × 600 pc ...
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zadetkov: 589

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