%0 Journal Article %@holdercode {isadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S} %@nexthigherunit 8JMKD3MGPCW/3ET2RFS %@archivingpolicy denypublisher denyfinaldraft12 %@resumeid 8JMKD3MGP5W/3C9JHSB %@resumeid %@resumeid 8JMKD3MGP5W/3C9JJ6L %@usergroup administrator %@usergroup vinicius %3 ueda-comparison.pdf %X The Li+ emission properties of the -eucryptite compound in the pasty, liquid and glassy forms were investigated. It was found that the liquid -eucryptite emits ten times more lithium than does its pasty counterpart whereas the glassy one not only keeps this high emission property but is also a very convenient Li+ ion source due to its being much easier to handle, making it a valuable candidate for a Li+-ion source for low-energy fast neutral lithium beam diagnostics (<10 keV). Our results suggest that it should be possible to measure the plasma-density fluctuations besides the densities with such diagnostics. The lifetime of the lithium emitter in high-current-extraction mode is much increased when glassy sources are used. Furthermore, using the same transformation method for all other aluminosilicates used for extraction of alkali-metal and thallium ions may improve their output, making new possibilities available in the area of basic atomic physics and in the field of heavy-ion-beam probe plasma diagnostics. %8 Oct %N 19 %T A comparison of the Li+-emission properties of pasty, liquid and glassy beta-eucryptite ion sources %@secondarytype PRE PI %K Lithium, ions, plasma density. %@group LAP-INPE-MCT-BR %@group LAP-INPE-MCT-BR %@group LAP-INPE-MCT-BR %@secondarykey INPE-13754-PRE/8943 %@copyholder SID/SCD %@issn 1434-6060 %2 sid.inpe.br/mtc-m16@80/2006/05.29.13.10.27 %@affiliation Instituto Nacional Pesquisas Espaciais, Geofisica Espacial (INPE) %@affiliation Instituto Nacional Pesquisas Espaciais, Geofisica Espacial (INPE) %@affiliation Instituto Nacional Pesquisas Espaciais, Geofisica Espacial (INPE) %@affiliation National Institute for Fusion Science %@affiliation National Institute for Fusion Science %@affiliation Nagoya University %@project Implantação Iônica por Imersão em Plasma (IIIP) %B Journal of Physics D: Applied Physics %P 2711-2716 %4 sid.inpe.br/mtc-m16@80/2006/05.29.13.10 %D 1997 %V 30 %A Ueda, Mario, %A Silva, R. R., %A Oliveira, Rogério de Moraes, %A Iguchi, H., %A Fujita, J., %A Kadota, K., %@dissemination WEBSCI; PORTALCAPES. %@area FISPLASMA