most citedTowards a New Generation of Monolithic Active Pixel Sensors

5 citations · 5 across the 3 of their papers we have counts for

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physics.ins-det2025

Characterization of the H2M Monolithic CMOS Sensor

Rafael Ballabriga, Eric Buschmann, Michael Campbell +29

The H2M (Hybrid-to-Monolithic) is a monolithic pixel sensor manufactured in a modified \SI{65}{\nano\meter}~CMOS imaging process with a small collection electrode. Its design addre…

physics.ins-det2025

Impact of the circuit layout on the charge collection in a monolithic pixel sensor

Corentin Lemoine, Rafael Ballabriga, Eric Buschmann +28

CERN's strategic R&D programme on technologies for future experiments recently started investigating the TPSCo 65nm ISC CMOS imaging process for monolithic active pixels sensors fo…

physics.ins-det2025

Transient studies using a TCAD and Allpix Squared combination approach

Manuel A. Del Rio Viera, Eric Buschmann, Ankur Chauhan +22

The goal of the TANGERINE project is to develop the next generation of monolithic silicon pixel detectors using a 65 nm CMOS imaging process, which offers a higher logic density an…

physics.ins-det2025

The H2M Monolithic Active Pixel Sensor -- characterizing non-uniform in-pixel response in a 65 nm CMOS imaging technology

Sara Ruiz Daza, Rafael Ballabriga, Eric Buschmann +28

The high energy physics community recently gained access to the TPSCo 65 nm ISC (Image Sensor CMOS), which enables a higher in-pixel logic density in monolithic active pixel sensor…

physics.ins-det2024

Simulations and Performance Studies of a MAPS in 65 nm CMOS Imaging Technology

Adriana Simancas, Justus Braach, Eric Buschmann +22

Monolithic active pixel sensors (MAPS) produced in a 65 nm CMOS imaging technology are being investigated for applications in particle physics. The MAPS design has a small collecti…

physics.ins-det20225 cited

Towards a New Generation of Monolithic Active Pixel Sensors

Ankur Chauhan, Manuel Del Rio Viera, Doris Eckstein +16

A new generation of Monolithic Active Pixel Sensors (MAPS), produced in a 65 nm CMOS imaging process, promises higher densities of on-chip circuits and, for a given pixel size, mor…