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MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

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Page 1: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

MOSS Spectroscopy Applications in Plasma

Physics

John Howard

Plasma Research LaboratoryAustralian National University

Page 2: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Outline

• MOSS spectrometer– Principle

– Doppler measurements on H-1

•Polarization Spectroscopy– Zeeman effect and MSE

•Spread spectrum FTS

•Imaging systems

Page 3: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Fourier Transform Spectroscopy

Page 4: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

MOSS SpectrometerConcept

Instrument

Page 5: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Advantages of MOSS

•High light throughput•High time resolution •Compact, robust

MOSS is optimum in the sense that all photons contribute to three independent pieces of information - intensity, shift and contrast.

DC Light intensity

atan(odd,even) Flow velocity (shift)

sqrt(odd2+even2) Temperature (contrast)

Page 6: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

MOSS Hardware

Page 7: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

MOSS spectroscopy on H-1

Lines of sight

Plasma cross section

Central ring

conductor

Fringe contrast versus time delayArII 488nm, Ti=10, (10), 100 eV

Nominal delay for LiNbO3 ( 25mm)

Page 8: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

L-H Confinement Transitions

Page 9: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Heat Modulation Experiments

Page 10: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Fluctuation Measurements

Page 11: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Polarization Spectroscopy

Page 12: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Polarization Spectroscopy

Spherical quadrature polarimeter

Page 13: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Polarization Spectroscopy

Page 14: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Spread Spectrum FTS

Spread Spectrum FTS

Page 15: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Imaging systems

Multiple spatial channels can be multiplexed through an imaging MOSS spectrometer while maintaining high light throughput and low instrument temperature.

Multiple-crystal modulators can be employed for truly 2-D spectral imaging: the spectrum at each spatial position is encoded in the temporal frequency domain.

Page 16: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Spread spectrum data at 587nm HeI

Plasma light Calibrationlaser pulse

Laser interferogram

Power spectrum of interferogram

time (ms)

Page 17: MOSS Spectroscopy Applications in Plasma Physics John Howard Plasma Research Laboratory Australian National University

Conclusion

• MOSS spectroscopy is a high throughput alternative to traditional grating spectrometers

• Well suited to plasma Doppler and polarization spectroscopy

• Fully 2-D spectral imaging is possible.

• Facilitates tomography of scalar (intensity) and vector (velocity) fields in H-1NF for force balance, fluctuation and particle/heat modulation studies