activity
20242026
collaborators

6 papers

quant-ph2026

Cryo-CMOS Antenna for Wireless Communications within a Quantum Computer Cryostat

Viviana Centritto, Ama Bandara, Heqi Deng +4

Scaling quantum computers from a few qubits to large numbers remains one of the critical challenges in realizing practical quantum advantage. Multi-core quantum architectures have…

cs.ET2026

Towards Scalable Multi-Chip Wireless Networks with Near-Field Time Reversal

Ama Bandara, Fátima Rodríguez-Galán, Pau Talarn +5

The concept of Wireless Network-on-Chip (WNoC) has emerged as a potential solution to address the escalating communication demands of modern computing systems due to its low-latenc…

quant-ph2026

28 GHz Wireless Channel Characterization for a Quantum Computer Cryostat at 4 Kelvin

Ama Bandara, Viviana Centritto Arrojo, Heqi Deng +6

The scalability of quantum computing systems is constrained by the wiring complexity and thermal load introduced by dense wiring for control, readout and synchronization at cryogen…

cs.ET2025

TRMAC: A Time-Reversal-based MAC Protocol for Wireless Networks within Computing Packages

Ama Bandara, Abhijit Das, Fatima Rodriguez-Galan +2

As chiplet-based integration and many-core architectures become the norm in high-performance computing, on-chip wireless communication has emerged as a compelling alternative to tr…

cs.ET2024

A MAC Protocol with Time Reversal for Wireless Networks within Computing Packages

Ama Bandara, Abhijit Das, Fátima Rodríguez-Galán +2

Wireless Network-on-Chip (WNoC) is a promising concept which provides a solution to overcome the scalability issues in prevailing networks-in-package for many-core processors. Howe…

cs.AR2024

Time Reversal for Near-Field Communications on Multi-chip Wireless Networks

Fátima Rodríguez-Galán, Ama Bandara, Elana Pereira de Santana +3

Wireless Network-on-Chip (WNoC) has been proposed as a low-latency, versatile, and broadcast-capable complement to current interconnects in the quest for satisfying the ever-increa…