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RIS citation export for TUPWI003: Proton Beam Applications for Silicon Bulk Micromachining

TY - CONF
AU - Nenzi, P.
AU - Ambrosini, F.
AU - Balucani, M.
AU - Bazzano, G.
AU - Klyshko, A.
AU - Marracino, F.
AU - Picardi, L.
AU - Ronsivalle, C.
AU - Snels, C.
AU - Surrenti, V.
AU - Tucci, M.
AU - Vadrucci, M.
ED - Henderson, Stuart
ED - Akers, Evelyn
ED - Satogata, Todd
ED - Schaa, Volker R.W.
TI - Proton Beam Applications for Silicon Bulk Micromachining
J2 - Proc. of IPAC2015, Richmond, VA, USA, May 3-8, 2015
C1 - Richmond, VA, USA
T2 - International Particle Accelerator Conference
T3 - 6
LA - english
AB - The irradiation of silicon with ion beams is an established technique to modify its properties. Protons are used for micromachining applications, in conjunction with porous silicon. Porous silicon does not form in areas irradiated with a given fluence of protons (>10¹⁴ cm⁻²). Our work concentrated on the applicability of masked irradiation of silicon wafers with 1.8 MeV proton beams delivered by the TOP-IMPLART LINAC. In our experiments 1-10 Ω*cm n,p-type silicon wafers were masked and irradiated with protons at fluences between 10¹⁴ and 10¹⁵ protons/cm². Porous silicon did not form in the irradiated areas up to a distance from the surface corresponding to the stopping range (30um). The suppression of porous silicon formation is due to the to the neutralization of dopant impurities by implanted protons that increases the local resistivity. The interest in using RF LINAC for micromachining applications lies in the possibility of deep implantation, that allows the realization of 3D structures for MEMS applications. The use of metal masks with uniform beams, instead of scanned micro- and nano-metric ion probes, increases throughput achievable in industrial processing of wafers.
PB - JACoW
CP - Geneva, Switzerland
SP - 2241
EP - 2244
KW - proton
KW - ion
KW - experiment
KW - linac
KW - quadrupole
DA - 2015/06
PY - 2015
SN - 978-3-95450-168-7
DO - 10.18429/JACoW-IPAC2015-TUPWI003
UR - http://jacow.org/ipac2015/papers/tupwi003.pdf
ER -