Salta al contenuto principale
Ricerc@Sapienza
Toggle navigation
Home
Login
Home
Persone
martina.carillo@uniroma1.it
Martina Carillo
Collaboratore
Struttura:
DIPARTIMENTO DI SCIENZE DI BASE ED APPLICATE PER L'INGEGNERIA
E-mail:
martina.carillo@uniroma1.it
Pagina istituzionale corsi di laurea
Curriculum Sapienza
Pubblicazioni
Titolo
Pubblicato in
Anno
Recent experimental results on the particle driven acceleration at the SPARC_LAB test facility
JOURNAL OF PHYSICS. CONFERENCE SERIES
2023
SAFEST: a compact C-band linear accelerator for VHEE-FLASH radiotherapy
JOURNAL OF PHYSICS. CONFERENCE SERIES
2023
A Hard Copper Open X-Band RF Accelerating Structure Made by Two Halves
INSTRUMENTS
2022
Proposal af a VHEE LINAC for FLASH radiotherapy
JACoW.ORG
2022
A novel method to calculate the magnetic field of a solenoid generated by a surface current element
WAVES IN RANDOM AND COMPLEX MEDIA
2022
High field hybrid photoinjector electron source for advanced light source applications
PHYSICAL REVIEW. ACCELERATORS AND BEAMS
2022
Perspectives in linear accelerator for FLASH VHEE: study of a compact C-band system
PHYSICA MEDICA
2022
Space charge analysis for low energy photoinjector
JOURNAL OF PHYSICS. CONFERENCE SERIES
2022
Start-to-end beam-dynamics simulations of a compact C-band electron beam source for high spectral brilliance applications
Start-to-End Beam-Dynamics Simulations of a Compact C-Band Electron Beam Source for High Spectral Brilliance Applications
2022
Design, optimization and experimental characterization of RF injectors for high brightness electron beams and plasma acceleration
JOURNAL OF INSTRUMENTATION
2022
Modeling Short Range Wakefield Effects in a High Gradient Linac
JACoW Publishing
2021
Three-Dimensional Space Charge Oscillations in a Hybrid Photoinjector
JACoW Publishing
2021
Preliminary Studies of a Compact VHEE Linear Accelerator System for FLASH Radiotherapy
JACoW Publishing
2021
Beam Dynamics for a High Field C-Band Hybrid Photoinjector
JACoW Publishing
2021
Relativistic versus nonrelativistic approaches to a low perveance high quality matched beam for a high efficiency ka-band klystron
INSTRUMENTS
2021
« prima
< precedente
1
2
© Università degli Studi di Roma "La Sapienza" - Piazzale Aldo Moro 5, 00185 Roma