Table 5.

Parameters used for the modelling: Doppler factor δ, distance of the emission region d, acceleration efficiency ξ, magnetic field B, electron energy density ue, EED: slope before the break: p1, minimum Lorentz factor γmin, slope after the break p2, the Lorentz factor of the break γbreak, maximum Lorentz factor γmax, co-moving size of the emission region rb. Free parameters of the model and derived parameters are put on the left-hand and right-hand side of the vertical line, respectively. For the case of ‘Far’ region B and ue are tied with equipartition condition.

Regionδd (cm)ξB (G)|$u_\mathrm{ e}\mathrm{(erg\, cm^{-3})}$|p1γminp2γbreakγmaxrb (cm)
Close152 × 10175 × 10−70.110.72.4503.4150026 0001.3 × 1016
Far153 × 10206 × 10−103.2 × 10−34 × 10−72.4251 0002 × 1019
Regionδd (cm)ξB (G)|$u_\mathrm{ e}\mathrm{(erg\, cm^{-3})}$|p1γminp2γbreakγmaxrb (cm)
Close152 × 10175 × 10−70.110.72.4503.4150026 0001.3 × 1016
Far153 × 10206 × 10−103.2 × 10−34 × 10−72.4251 0002 × 1019
Table 5.

Parameters used for the modelling: Doppler factor δ, distance of the emission region d, acceleration efficiency ξ, magnetic field B, electron energy density ue, EED: slope before the break: p1, minimum Lorentz factor γmin, slope after the break p2, the Lorentz factor of the break γbreak, maximum Lorentz factor γmax, co-moving size of the emission region rb. Free parameters of the model and derived parameters are put on the left-hand and right-hand side of the vertical line, respectively. For the case of ‘Far’ region B and ue are tied with equipartition condition.

Regionδd (cm)ξB (G)|$u_\mathrm{ e}\mathrm{(erg\, cm^{-3})}$|p1γminp2γbreakγmaxrb (cm)
Close152 × 10175 × 10−70.110.72.4503.4150026 0001.3 × 1016
Far153 × 10206 × 10−103.2 × 10−34 × 10−72.4251 0002 × 1019
Regionδd (cm)ξB (G)|$u_\mathrm{ e}\mathrm{(erg\, cm^{-3})}$|p1γminp2γbreakγmaxrb (cm)
Close152 × 10175 × 10−70.110.72.4503.4150026 0001.3 × 1016
Far153 × 10206 × 10−103.2 × 10−34 × 10−72.4251 0002 × 1019
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