Abstract

We collected dust particles ranging in size from 1nm to 10µm from the Large Helical Device employing two methods: an ex-situ filtered vacuum collection method and an in-situ dust collection method. The size distribution from 1nm to 10µm is well expressed by the Junge distribution. Dust particles are classified into three kinds: small spherical dust particles below 1µm in size, agglomerates consisting of primary particles of 10nm, and large dust particles above 1µm in size and irregular in shape; this suggests three formation mechanisms of dust particles: chemical vapor deposition growth, agglomeration, and peeling from walls. In-situ collection shows that agglomeration between dust particles takes place in main discharges. The primary dust particles in agglomerates are around 10nm in size, suggesting agglomeration between a negatively charged large agglomerate and a positively charged dust particle 10nm in size. We have also confirmed the important fact that a large number of dust particles move during vacuum vent. Therefore, the in-situ dust collection method is needed to reveal the generation-time and -processes of dust particles and their deposition position during discharges. c

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