We calculate dust spectral energy distributions (SEDs) for a range of grain sizes and compositions, using physical properties appropriate for five pulsar wind nebulae (PWNe) from which dust emission associated with the ejecta has been detected. By fitting the observed dust SED with our models, with the number of grains of different sizes as the free parameters, we are able to determine the grain size distribution and total dust mass in each PWN. We find that all five PWNe require large (>= 0.1 mu m) grains to make up the majority of the dust mass, with strong evidence for the presence of micron-sized or larger grains. Only two PWNe contain non-negligible quantities of small (< 0.01 mu m) grains. The size distributions are generally well-rep...
The amount of dust estimated from infrared to sub-millimetre (submm) observations strongly depends o...
We search for far-infrared (FIR) counterparts of known supernova remnants (SNRs) in the Galactic pla...
The evolution of the dust grain size distribution has been studied in recent years with great detail...
We calculate dust spectral energy distributions (SEDs) for a range of grain sizes and compositions, ...
We calculate dust spectral energy distributions (SEDs) for a range of grain sizes and compositions, ...
Recent far-infrared (IR) observations of supernova remnants (SNRs) have revealed significantly large...
Shockwaves driven by supernovae both destroy dust and reprocess the surviving grains, greatly affect...
We model the thermal dust emission from dust grains heated by synchrotron radiation and by particle ...
We search for far-infrared (FIR) counterparts of known supernova remnants (SNRs) in the Galactic pla...
We propose an updated dust evolution model that focuses on the grain size distribution in a galaxy. ...
We have modelled the near-infrared to radio images of the Crab Nebula with a Bayesian SED model to s...
We model the thermal dust emission from dust grains heated by synchrotron radiation and by particle ...
Context. Dust is formed out of stellar material and it is constantly affected by different mechanism...
Aims. In this paper, we aim to constrain the dust mass and grain sizes in the interaction regions be...
The amount of dust estimated from infrared to sub-millimetre (submm) observations strongly depends o...
We search for far-infrared (FIR) counterparts of known supernova remnants (SNRs) in the Galactic pla...
The evolution of the dust grain size distribution has been studied in recent years with great detail...
We calculate dust spectral energy distributions (SEDs) for a range of grain sizes and compositions, ...
We calculate dust spectral energy distributions (SEDs) for a range of grain sizes and compositions, ...
Recent far-infrared (IR) observations of supernova remnants (SNRs) have revealed significantly large...
Shockwaves driven by supernovae both destroy dust and reprocess the surviving grains, greatly affect...
We model the thermal dust emission from dust grains heated by synchrotron radiation and by particle ...
We search for far-infrared (FIR) counterparts of known supernova remnants (SNRs) in the Galactic pla...
We propose an updated dust evolution model that focuses on the grain size distribution in a galaxy. ...
We have modelled the near-infrared to radio images of the Crab Nebula with a Bayesian SED model to s...
We model the thermal dust emission from dust grains heated by synchrotron radiation and by particle ...
Context. Dust is formed out of stellar material and it is constantly affected by different mechanism...
Aims. In this paper, we aim to constrain the dust mass and grain sizes in the interaction regions be...
The amount of dust estimated from infrared to sub-millimetre (submm) observations strongly depends o...
We search for far-infrared (FIR) counterparts of known supernova remnants (SNRs) in the Galactic pla...
The evolution of the dust grain size distribution has been studied in recent years with great detail...