Anomalous Ion Heating Status and Research Plan - PowerPoint PPT Presentation

1 / 23
About This Presentation
Title:

Anomalous Ion Heating Status and Research Plan

Description:

Anomalous ion heating and/or acceleration is present in many laboratory and space plasmas. ... Isotropy of ion heating, Z and M dependence. ... – PowerPoint PPT presentation

Number of Views:38
Avg rating:3.0/5.0
Slides: 24
Provided by: gennady
Category:

less

Transcript and Presenter's Notes

Title: Anomalous Ion Heating Status and Research Plan


1
Anomalous Ion HeatingStatus and Research Plan
Gennady Fiksel Robert Rosner UW Madison Center
for Magnetic Self-Organization in Laboratory and
Astrophysical Plasma August 4-6, Madison, WI
2
Preamble
  • Anomalous ion heating and/or acceleration is
    present in many laboratory and space plasmas.
  • There are no reliable and experimentally proved
    explanations of that.
  • There is definite correlation with magnetic
    reconnections and/or magnetic turbulence.
  • The goal is to understand the nature of ion
    heating and unravel the relation to magnetic
    turbulence and reconnection.

3
Outline
  • Overview of results. Similarities and differences
    in different experiments/observations.
  • Ion heating and magnetic turbulence
  • Plans and progress.

4
MST - anomalously high ion temperature observed
It is expected that Ti /Te 0.1 based on the
balance between collisional e/i heating and
losses.
5
MST - fast ion heating in during reconnection
events
Heating phase Required heating power
1MW/m3 What can provide it?
Cooling phase Why so fast?
6
MST - Ion heating is isotropic
No fast Alfvenic flows were detected.
Distribution function remains Maxwellian
7
MRX - Enhanced ion heating inside reconnection
region
(Hsu et al. 00)
8
Solar corona - strong heating of protons and
heavy ions
Heating is M and Z dependent
9
Solar corona - strong flow, ion heating is
anisotropic
From Cranmer et al., ApJ, 511, 481 (1998)
10
SSX - Alfvenic flows and ion heating
Ion energy distribution measured with
electrostatic analyzers
C. Cothran M. Brown
Fit to a thermal distribution with
drift T3311eV and V8620eV
11
Comparison table
12
We do not know if the ion heating mechanism is
the same or different in these cases
Magnetic fluctuations and/or magnetic
reconnection present in all cases and thought to
be the main candidate for ion heating.
13
MST - correlation of ion heating with active
control of magnetic activity
In improved confinement regimes with low magnetic
fluctuations the anomalous contribution to ion
heating decreases.
14
MST - correlation of ion heating with active
control of magnetic activity
In improved confinement regimes with low magnetic
fluctuations the anomalous contribution to ion
heating decreases.
15
MRX - Broad spectra of magnetic turbulence
16
Solar magnetic turbulence
Wave frequencies vary extremely widely in the
outflowing solar wind
17
Questions
  • What is the free energy source?
  • What is relation between ion heating and
    reconnections?
  • Viscous damping of reconnection flows or
    fluctuation induced heating?
  • What fluctuations are responsible for ion
    accelerating and heating and what is the
    absorption mechanism?
  • Energy flow from the energy source into
    fluctuations - direct excitation or non-linear
    cascade?
  • Ion heating in different lab/space plasma -
    manifestation of the same mechanism?

18
MST diagnostic set
  • Coming online very soon
  • New Diagnostic Neutral Beam for CHERS - longer
    pulse, higher energy
  • New insertable probes for local ion Doppler
    spectroscopy
  • New probe for local measurements of ion energy
    deposition ltJiEgt
  • New Mach probe for local ion flow measurements

19
MST experimental plans
  • Detailed accounting of ion energy balance -
    spatial profile of Ti, Te, ne, radiation, and CX
    losses. Models of ion thermal transport.
  • Isotropy of ion heating, Z and M dependence.
  • Cross-correlation of Ti with magnetic
    fluctuations in time and frequency domains,
    contribution from different modes.
  • Local (edge) measurements of ion energy
    deposition ltJiEgt
  • Local measurements of ion flows and evaluation of
    ion viscous heating - cross with the flow and
    momentum group.
  • Active control of magnetic activity.
  • Active ion heating from externally driven E.

20
MRX
Newly upgraded MRX has expanded operation regimes
to study ion heating, such as more collisionless
or larger S plasmas.
21
SSX
  • Study ion heating and flow generation in FRC-like
    equilibrium
  • ion Doppler spectroscopy (with contribution from
    MST)
  • single shot measurement of Ti, vi (1 ?s
    resolution)

22
Theory plans
  • Ion acceleration by E field - effect of
    impurities, mirror trapping, stochastic magnetic
    field, and magnetic islands.
  • Dielectric tensor for ion heating from tearing
    modes.
  • Viscous heating by compression tearing modes.
  • Ion heating in self consistent streaming electron
    emission theory
  • Cascade processes to generate small-scale/high-fre
    quencies. Assessment of Alfven cascades.
  • Ion and electron heating via Alfven cascades.
  • 2-fluid Nimrod study of ion heating from
    reconnection.
  • PIC simulation of ion heating from reconnection.

23
Solar corona and astrophysics
Bob Rosner - next
Write a Comment
User Comments (0)
About PowerShow.com