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Featured researches published by J. W. Radder.


Plasma Physics and Controlled Fusion | 2003

Comparison of electron cyclotron heating results in the helically symmetric experiment with and without quasi-symmetry

K.M. Likin; A Abdou; A. F. Almagri; D.T. Anderson; F S B Anderson; D. L. Brower; J Canik; C. Deng; Stefan P. Gerhardt; W. Guttenfelder; S Oh; J. W. Radder; V Sakaguchi; J. C. Schmitt; J Tabora; J.N. Talmadge; Kan Zhai

The extraordinary wave at the second harmonic of the electron cyclotron frequency produces and heats the plasma in the helically symmetric experiment. Ray-tracing calculations predict 40% first pass absorption at a plasma density of 1.5 x 10 18 m -3 and an electron temperature of 400 eV To measure the wave absorption, a set of absolutely calibrated microwave detectors is installed along the machine. It was found that the absorption efficiency is very high (about 0.9) in the quasi-helically symmetric (QHS) and mirror configurations, and it drops to 0.6 in the anti-mirror mode. The confinement of particles in the different configurations is studied in the neutral gas breakdown experiments. With the same gas pressure and heating power, the density for the QHS configuration has a larger growth rate (10 4 s -1 ) compared with the mirror (5 x 10 3 s -1 ) and anti-mirror modes (2 x 10 3 s -1 ). A study of the stored energy versus launched power and plasma density shows that it increases linearly (up to 50 J) with power and has a maximum at a low plasma density (at about 0.4 × 10 18 m -3 ). The central electron temperature measured by Thomson scattering also rises linearly with heating power and reaches 600 eV at 100 kW of launched power.


Journal of Plasma and Fusion Research | 2002

Quasi-Symmetry in Stellarator Research 4. Initial Experimental Results from HSX

D.T. Anderson; A. F. Almagri; F. Simon B. Anderson; Stefan P. Gerhardt; J. W. Radder; J.N. Talmadge


International Journal of Infrared and Millimeter Waves | 2008

Hybrid Transmission Line for ECRH in the Helically Symmetric Experiment

J. W. Radder; K.M. Likin; F. S. B. Anderson; D.T. Anderson


Archive | 2001

The Effects of Symmetry Breaking on Plasma Formation in the Helically Symmetric Experiment (HSX)

J. W. Radder; D.T. Anderson; S.P. Gerhardt; A. F. Almagri; F. S. B. Anderson; J.N. Talmadge; D. L. Brower; Chengbin Deng


Bulletin of the American Physical Society | 2012

Modeling of High-Power Fundamental O-mode ECRH Plasmas in the HSX Stellarator

J. W. Radder; K.M. Likin; J.N. Talmadge; D.T. Anderson; G. Weir; S. Murakami


Bulletin of the American Physical Society | 2011

Measuring and Predicting the Flow Velocity in the HSX Stellarator

A.R. Briesemeister; Ke Zhai; J. W. Radder; D.T. Anderson; F. S. B. Anderson; J.N. Talmadge


Bulletin of the American Physical Society | 2011

Recent Results and New Directions of the HSX Program

D.T. Anderson; F. S. B. Anderson; A.R. Breisemeister; E. Chlechowitz; C. Clark; C.R. Cook; L.D. Hurd; K.M. Likin; J. W. Radder; J.C. Schmitt; L. Stephey; J.N. Talmadge; G.M. Weir; R. Wilcox; Ke Zhai; D. L. Brower; C. Deng


Bulletin of the American Physical Society | 2011

Initial Operation of the Second ECRH System on the HSX Stellarator

G. Weir; K.M. Likin; F. S. B. Anderson; D.T. Anderson; J. W. Radder; J.N. Talmadge


Bulletin of the American Physical Society | 2011

Modeling of X-Ray Bremsstrahlung and ECE Diagnostics with Non-Maxwellian Electron Distribution Functions in the HSX Stellarator

J. W. Radder; K.M. Likin; J.N. Talmadge; D.T. Anderson; G. Weir


Bulletin of the American Physical Society | 2010

Overview of HSX Stellarator Experiments

K.M. Likin; D.T. Anderson; F. S. B. Anderson; A.R. Briesemeister; D. L. Brower; C. Clark; C.R. Cook; C. Deng; J. Lore; J. W. Radder; J.C. Schmitt; J.N. Talmadge; G.M. Weir; R. Wilcox; Ke Zhai

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D.T. Anderson

University of Wisconsin-Madison

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J.N. Talmadge

University of Wisconsin-Madison

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K.M. Likin

University of Wisconsin-Madison

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F. S. B. Anderson

University of Wisconsin-Madison

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A. F. Almagri

University of Wisconsin-Madison

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D. L. Brower

University of California

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C. Deng

University of Wisconsin-Madison

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Chengbin Deng

University of California

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Kan Zhai

University of Wisconsin-Madison

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S.P. Gerhardt

Princeton Plasma Physics Laboratory

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