Medical progress, both diagnostic and therapeutic, is often closely linked to technological advances. This is the case with tumor hadrontherapy, a highly effective technique for treating previously difficult-to-treat tumors. The development of Photonic BandGap (PBG) materials provides a decisive boost toward widespread and reliable use. In this paper we analyse the principal characteristics of Photonic BandGap (PBG) materials to realize accelerating cavity for cancer hadron therapy.

Accelerating Microcavities Based on Photonic Bandgap Materials for Tumor Hadrontherapy / Marani, R., Perri, A.G.. - In: I-MANAGER'S JOURNAL ON ELECTRONICS ENGINEERING. - ISSN 2249-0760. - ELETTRONICO. - 16:3(2026), pp. 1-5. [10.26634/jele.16.3.1075]

Accelerating Microcavities Based on Photonic Bandgap Materials for Tumor Hadrontherapy

Roberto Marani
Formal Analysis
;
Anna Gina Perri
Writing – Review & Editing
2026

Abstract

Medical progress, both diagnostic and therapeutic, is often closely linked to technological advances. This is the case with tumor hadrontherapy, a highly effective technique for treating previously difficult-to-treat tumors. The development of Photonic BandGap (PBG) materials provides a decisive boost toward widespread and reliable use. In this paper we analyse the principal characteristics of Photonic BandGap (PBG) materials to realize accelerating cavity for cancer hadron therapy.
2026
Accelerating Microcavities Based on Photonic Bandgap Materials for Tumor Hadrontherapy / Marani, R., Perri, A.G.. - In: I-MANAGER'S JOURNAL ON ELECTRONICS ENGINEERING. - ISSN 2249-0760. - ELETTRONICO. - 16:3(2026), pp. 1-5. [10.26634/jele.16.3.1075]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11589/306860
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