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1.
Rev Sci Instrum ; 79(10): 10E722, 2008 Oct.
Article in English | MEDLINE | ID: mdl-19044539

ABSTRACT

A wave detector, a newly designed magnetic probe, is installed in the large helical device (LHD). This wave detector is a 100-turn loop coil with electrostatic shield. Comparing a one-loop coil to this detector, this detector has roughly constant power coupling in the lower frequency range of 40 MHz, and it can easily detect magnetic wave in the frequency of a few megahertz. During high-harmonic fast wave heating, lower frequency waves (<10 MHz) were observed in the LHD for the first time, and for the power density threshold of lower frequency wave excitation (7.5 MHz) the power density of excited pumped wave (38.47 MHz) was approximately -46 dBmHz. These lower frequencies are kept constant for electron density and high energy particle distribution, and these lower frequency waves seem to be ion cyclotron waves caused by nonlinear wave-particle interaction, for example, parametric decay instability.

2.
Phys Rev Lett ; 97(5): 055002, 2006 Aug 04.
Article in English | MEDLINE | ID: mdl-17026108

ABSTRACT

In reduced recycling discharges in the Large Helical Device, a super dense core plasma develops when a series of pellets are injected. A core region with density as high as 4.5 x 10(20) m(-3) and temperature of 0.85 keV is maintained by an internal diffusion barrier with very high-density gradient. These results may extrapolate to a scenario for fusion ignition at very high density and relatively low temperature in helical devices.

3.
Phys Rev Lett ; 96(12): 125006, 2006 Mar 31.
Article in English | MEDLINE | ID: mdl-16605919

ABSTRACT

A new slow transition process for energy transport in magnetically confined plasmas is reported. The slow transition is characterized by the change between two metastable transport conditions characterized by a weak and a strong electron temperature (Te) dependence of normalized heat flux. These two branches are found to merge at the critical gradient. In metastable transport, the derivative of normalized heat flux to the Te gradient, [EQUATION: SEE TEXT], is positive, while it becomes negative during the transition phase. The time for the transition increases as the normalized Te gradient is increased and exceeds the transport time scale characterized by the global energy confinement time.

4.
Phys Rev Lett ; 90(20): 205001, 2003 May 23.
Article in English | MEDLINE | ID: mdl-12785901

ABSTRACT

Sawtooth oscillations have been observed in current-carrying helical plasmas by using electron-cyclotron-emission diagnostics in the Large Helical Device. The plasma current, which is driven by neutral beam injection, reduces the beta threshold of the sawtooth oscillation. When the central q value is increased due to the plasma current, the core region crashes, and, when it is decreased, the edge region crashes annularly. Observed rapid mixture of the plasma in the limited region suggests that these sawtooth crashes are reconnection phenomena. Unlike previous experiments, no precursor oscillation has been observed.

5.
Health Phys ; 83(4): 519-25, 2002 Oct.
Article in English | MEDLINE | ID: mdl-12240727

ABSTRACT

An access-control system has been developed and installed at the National Institute for Fusion Science. The system uses an interlock-signal system and a group-access-control system to safeguard the operation of the large helical device. In this paper, the access-control system is described along with its features, advantages and disadvantages, and benefits.


Subject(s)
Environmental Exposure/prevention & control , Occupational Exposure/prevention & control , Occupational Health , Particle Accelerators , Radiation Monitoring/methods , Security Measures , Humans , Software
6.
Phys Rev Lett ; 87(13): 135002, 2001 Sep 24.
Article in English | MEDLINE | ID: mdl-11580597

ABSTRACT

It was observed that the vacuum magnetic island produced by an external error magnetic field in the large helical device shrank in the presence of plasma. This was evidenced by the disappearance of flat regions in the electron temperature profile obtained by Thomson scattering. This island behavior depended on the magnetic configuration in which the plasmas were produced.

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