Javascript must be enabled to continue!
Field-aligned conductance values estimated from Maxwellian and kappa distributions in quiet and disturbed events using Freja electron data
View through CrossRef
Abstract. We study the question of what difference it makes for the derived field-aligned conductance (K) values if one uses Maxwellian or kappa distributions for the fitting of low-orbiting satellite electron flux spectra in the auroral region. This question has arisen because sometimes a high-energy tail is seen in the spectra. In principle, the kappa fits should always be better, because the kappa distribution is a generalization of the Maxwellian. However, the physical meaning of the parameters appearing in the Maxwellian is clearer. It therefore makes sense to study under which circumstances it is appropriate to use a Maxwellian. We use Freja electron data (TESP and MATE) from two events. One of the events represents quiet magnetospheric conditions (stable arc) and the other represents disturbed conditions (surge). In these Freja events, at least, using kappa rather than Maxwellian fitting gives a better fit to the observed distribution, but the difference in K values is not large (usually less than 20). The difference can be of either sign. However, sometimes even the kappa distribution does not provide a good fit, and one needs a more complicated distribution such as two Maxwellians. We investigate the relative contributions of the two Maxwellians to the total field-aligned conductance value in these cases. We find that the contribution of the high-energy population is insignificant (usually much less than 20). This is because K is proportional to n∕ Ec, where n is the source plasma density and Ec is the characteristic energy.Key words. Field-aligned conductance · Maxwellian distribution · Kappa distribution · Freja electron data
Title: Field-aligned conductance values estimated from Maxwellian and kappa distributions in quiet and disturbed events using Freja electron data
Description:
Abstract.
We study the question of what difference it makes for the derived field-aligned conductance (K) values if one uses Maxwellian or kappa distributions for the fitting of low-orbiting satellite electron flux spectra in the auroral region.
This question has arisen because sometimes a high-energy tail is seen in the spectra.
In principle, the kappa fits should always be better, because the kappa distribution is a generalization of the Maxwellian.
However, the physical meaning of the parameters appearing in the Maxwellian is clearer.
It therefore makes sense to study under which circumstances it is appropriate to use a Maxwellian.
We use Freja electron data (TESP and MATE) from two events.
One of the events represents quiet magnetospheric conditions (stable arc) and the other represents disturbed conditions (surge).
In these Freja events, at least, using kappa rather than Maxwellian fitting gives a better fit to the observed distribution, but the difference in K values is not large (usually less than 20).
The difference can be of either sign.
However, sometimes even the kappa distribution does not provide a good fit, and one needs a more complicated distribution such as two Maxwellians.
We investigate the relative contributions of the two Maxwellians to the total field-aligned conductance value in these cases.
We find that the contribution of the high-energy population is insignificant (usually much less than 20).
This is because K is proportional to n∕ Ec, where n is the source plasma density and Ec is the characteristic energy.
Key words.
Field-aligned conductance · Maxwellian distribution · Kappa distribution · Freja electron data.
Related Results
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
<span style="font-size: 11pt; color: black; font-family: 'Times New Roman','serif'">ΠΗΛΙΝΑ ΙΓ&Delta...
Un manoscritto equivocato del copista santo Theophilos († 1548)
Un manoscritto equivocato del copista santo Theophilos († 1548)
<p><font size="3"><span class="A1"><span style="font-family: 'Times New Roman','serif'">ΕΝΑ ΛΑΝ&...
Restricted kappa chain expression in early ontogeny: biased utilization of V kappa exons and preferential V kappa-J kappa recombinations.
Restricted kappa chain expression in early ontogeny: biased utilization of V kappa exons and preferential V kappa-J kappa recombinations.
To determine the extent of kappa chain diversity in the preimmune repertoire early in development, kappa cDNA libraries were analyzed from 15-d old fetal omentum, 18-d-old fetal li...
Effect of wall secondary electron distribution function on the characteristics of stable sheath near a dielectric wall
Effect of wall secondary electron distribution function on the characteristics of stable sheath near a dielectric wall
It is widely known that the energy distribution of secondary electrons induced by a single-energy electron beam presents typical bimodal configuration. However, the total velocity ...
Introduction to special section: The Freja Mission
Introduction to special section: The Freja Mission
Freja was a joint Swedish and German scientific satellite project to study the interaction between hot magnetospheric plasma and the topside atmosphere/ionosphere. Freja was launch...
Interfacial thermal conductance of gallium nitride/graphene/diamond heterostructure based on molecular dynamics simulation
Interfacial thermal conductance of gallium nitride/graphene/diamond heterostructure based on molecular dynamics simulation
<sec>Gallium nitride chips are widely used in high-frequency and high-power devices. However, thermal management is a serious challenge for gallium nitride devices. To improv...
Electric Conductance
Electric Conductance
The migration of colloidal soil particles in an applied electric field has been discussed in Chapter 7. Soil particles carrying electric charges invariably adsorb equivalent amount...
Activation of NF-kappa B requires proteolysis of the inhibitor I kappa B-alpha: signal-induced phosphorylation of I kappa B-alpha alone does not release active NF-kappa B.
Activation of NF-kappa B requires proteolysis of the inhibitor I kappa B-alpha: signal-induced phosphorylation of I kappa B-alpha alone does not release active NF-kappa B.
The transcription factor NF-kappa B is retained in the cytoplasm by its inhibitor I kappa B-alpha. Upon cellular stimulation with a variety of pathogen- or stress-related agents, I...

