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ENHANCED PLASMA PERFORMANCE IN C-2W ADVANCED BEAM-DRIVEN FIELD-REVERSED CONFIGURATION EXPERIMENTS

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This paper presents recent advancements in plasma performance achieved in TAE Technologies' C-2W ('Norman') field-reversed configuration (FRC) device. Enhancements including an extended 40 ms neutral-beam injector pulse, optimized edge electrode biasing, magnetic-field profile reshaping, and insertable gas fueling enabled sustained high-temperature FRC plasmas with electron temperatures up to ~1 keV. Measurements demonstrate that electron energy confinement time scales approximately as Te^2 into the collisionless regime.
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Page 1 - Introduction and Operational Advancements

Category – IAC ENHANCED PLASMA PERFORMANCE IN C-2W ADVANCED BEAM-DRIVEN FIELD-REVERSED CONFIGURATION EXPERIMENTS H. Gota,1 A. Smirnov,1 M.W. Binderbauer,1 T. Tajima,1,2 S. Putvinski,1 S.A. Dettrick,1 E. Granstedt,1 M.E. Griswold,1 D.K. Gupta,1 S. Korepanov,1 R.M. Magee,1 M. Nations,1 T. Roche,1 J.A. Romero,1 J.B. Titus,1 E. Trask,1 M. Tuszewski,1 P. Yushmanov,1 K. Zhai,1 L. Schmitz,1,3 Z. Lin,2 S. Krasheninnikov,4 E.A. Baltz,5 J.C. Platt,5 T. Asai,6 A.A. Ivanov,7 and the TAE Team1 1 TAE Technologies, Inc., Foothill Ranch, CA, USA 2 UCI, Irvine, CA, USA 3 UCLA, Los Angeles, CA, USA 4 UCSD, San Diego, CA, USA 5 Google LLC, Mountain View, CA, USA 6 Nihon University, Tokyo, Japan 7 Budker Institute of Nuclear Physics, Novosibirsk, Russia Email: [email protected] TAE Technologies (TAE) is pursuing an alternative approach to magnetically confined fusion, which relies on field-reversed configuration (FRC) plasmas composed of energetic and well-confined particles by means of a state-of-the-art tunable-energy neutral-beam (NB) injector system, whose operating energy range is in 15–40 keV that can be tuned/controlled during a shot. TAE’s current experimental device, C-2W (a.k.a. “Norman”), is the world’s largest compact-toroid (CT) device and has made significant progress in FRC performance [1,2]. It produces record breaking, stable, high temperature advanced beam-driven FRC plasmas, dominated by injected fast particles and sustained in steady state, which is primarily limited by NB pulse duration. The NB power supply system has recently been upgraded to extend the pulse length from 30 ms to 40 ms, which allows for a longer plasma lifetime thus better characterizing and further enhancing FRC performance. A new insertable gas-injection system has been developed and deployed in the mirror region of the C-2W confinement section, which enables to inject and fuel sufficient particles at a proper radial location in the open-field-line regions to maintain plasma density and bias current from electrodes. Google’s machine-learning framework for experiment optimization [2,3] has been routinely used in C-2W. Together with real-time control systems for FRC shape/position control [4] as well as for electrode biasing and particle fueling, C-2W operations have now reached to a matured level where the machine can produce hot, stable, long lived and repeatable plasmas in a well-controlled manner. In recent C-2W experiments, adequately-controlled external magnetic-field profile throughout the machine and proper gas injection/fueling have led to more effective edge biasing from electrodes to globally stabilize FRC plasma. It allows to improve the efficiency of NB-to-FRC coupling as well as to accumulate more fast ions inside the FRC, therefore more plasma heating and current drive are obtained. Due to the synergistic effect of efficient edge biasing and NB injection as well as by dedicated plasma and machine optimization efforts in C-2W, FRC plasma state has significantly advanced to a much higher level than the previously-reported good FRC condition [2] as shown in Fig. 1. Note that for simplicity and performance comparison at a quiescent phase in 2 different shots, initial FRC formation phase (t < 5 ms) is not shown in the figure. Some highlights and key features of the recent enhanced plasma performance (for instance in shot #143348) are as follows: (i) excluded-flux radius of FRC is sustained at ~0.45–0.5 m until NB termination at 40 ms, while FRC length and volume FIG. 1. Time evolutions of excluded-flux radius, averaged electron density inside FRC separatrix, and total energy of FRC for recent C-2W shot 143348 (red), compared with previously-reported good shot 114534 (green) [2].

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This paper presents recent advancements in plasma performance achieved in TAE Technologies' C-2W ('Norman') field-reversed configuration (FRC) device. Enhancements including an extended 40 ms neutral-beam injector pulse, optimized edge electrode biasing, magnetic-field profile reshaping, and inserta...