E. Vardaci, A. Vanzanella, Tathagata Banerjee, A. Di Nitto, A. Boiano, Francesco Cassese, Giuseppe Passeggio, G. Tortone, P. A. Setaro, D. Mercogliano, W. H. Trzaska, Saket Suman, Malika Kaushik, Davide Panico, Simona Di Costanzo, Giuseppe Alifano, Antonio Cicchella, Corrado Della Noce
A large-area, position-sensitive, passing-through detector unit, named TOSCA ( T ime- O f-flight-sub-nano-second S pectrometer for C harged radiation A pplications), has been developed for use in Time-Of-Flight (TOF) spectrometers. The detector provides simultaneous measurements of timing and two-dimensional impact position of traversing ions by detecting secondary electrons emitted from a thin conversion foil. The electrons are guided by electrostatic optics toward a microchannel plate amplification stage and collected on a pads-and-strips anode integrated into a printed circuit board, replacing conventional wire-based delay-line readout systems. Position resolutions of the order of 1 mm and intrinsic time resolutions better than 100 ps have been achieved when coupled to fast sampling electronics. The passing-through architecture ensures that only electrons reach the microchannel plates, resulting in improved radiation hardness and extended detector lifetime. The use of identical, fully position-sensitive TOSCA units as both Start and Stop detectors removes the functional asymmetry typical of conventional TOF spectrometers and enables multi-point trajectory measurements within a single TOF arm. This approach allows the realization of compact and flexible two-arm TOF spectrometers based on four identical detector modules. In-beam tests with heavy ions demonstrate the performance and potential of the TOSCA concept for high-resolution mass and energy measurements in heavy-ion reaction studies.