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MICRODOSIMETRY AT NANOMETRIC SCALE WITH AN AVALANCHE-CONFINEMENT TEPC: RESPONSE AGAINST A HELIUM ION BEAM.
Mazzucconi, D; Bortot, D; Agosteo, S; Pola, A; Pasquato, S; Fazzi, A; Colautti, P; Conte, V; Petringa, G; Amico, A; Cirrone, G A P.
Afiliación
  • Mazzucconi D; Politecnico di Milano, Dipartimento di Energia, via La Masa 34, Milano, Italy.
  • Bortot D; INFN, Sezione di Milano, via Celoria 16, Milano, Italy.
  • Agosteo S; Politecnico di Milano, Dipartimento di Energia, via La Masa 34, Milano, Italy.
  • Pola A; INFN, Sezione di Milano, via Celoria 16, Milano, Italy.
  • Pasquato S; Politecnico di Milano, Dipartimento di Energia, via La Masa 34, Milano, Italy.
  • Fazzi A; INFN, Sezione di Milano, via Celoria 16, Milano, Italy.
  • Colautti P; Politecnico di Milano, Dipartimento di Energia, via La Masa 34, Milano, Italy.
  • Conte V; INFN, Sezione di Milano, via Celoria 16, Milano, Italy.
  • Petringa G; Politecnico di Milano, Dipartimento di Energia, via La Masa 34, Milano, Italy.
  • Amico A; INFN, Sezione di Milano, via Celoria 16, Milano, Italy.
  • Cirrone GAP; Politecnico di Milano, Dipartimento di Energia, via La Masa 34, Milano, Italy.
Radiat Prot Dosimetry ; 183(1-2): 177-181, 2019 May 01.
Article en En | MEDLINE | ID: mdl-30535177
ABSTRACT
The tissue-equivalent proportional counter (TEPC) is the most accurate device for measuring the microdosimetric properties of a particle beam but, since the lower operation limit of common TEPCs is ~0.3 µm, no detailed information on the track structure of the impinging particles can be obtained. The pattern of particle interactions at the nanometric level is measured directly by only three different nanodosimeters worldwide practical instruments are not yet available. In order to partially fill the gap between microdosimetry and track-nanodosimetry, a low-pressure avalanche-confinement TEPC was designed and constructed for simulating tissue-equivalent sites down to the nanometric region. The present paper aims at describing the response of this TEPC in the range 0.3 µm-25 nm to a 62 MeV/n 4He ion beam. The experimental results, for depths near the Bragg peak, show good agreement with FLUKA simulations and suggest that, for smaller depths, the distribution is highly influenced by secondary electrons.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Radiometría / Nanotecnología / Helio Idioma: En Revista: Radiat Prot Dosimetry Año: 2019 Tipo del documento: Article País de afiliación: Italia

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Radiometría / Nanotecnología / Helio Idioma: En Revista: Radiat Prot Dosimetry Año: 2019 Tipo del documento: Article País de afiliación: Italia