collaborators

11 papers

physics.optics2026

Harnessing bound states in the continuum for quantum and nonlinear photonics in silicon nitride microresonators

Eduardo C. Lima, Marco Clementi, Alice Viola +4

In this work we theoretically and experimentally investigate bound states in the continuum (BICs) in a reconfigurable integrated photonic structure, focusing on spontaneous four-wa…

quant-ph2026

A Universal All-Fiber Quantum Buffer for the Telecom Band

Domenico Compagnini, Noemi Tagliavacche, Sara Congia +4

The realization of a scalable quantum internet relies on the ability to temporally align asynchronous photonic signals through on-demand buffering. While matter-based quantum memor…

quant-ph2026

Gigahertz-rate thin-film lithium niobate receiver for time-bin quantum communication

Andrea Bernardi, Marco Clementi, Marcello Bacchi +12

Time-bin encoded quantum states of light are crucial for quantum technology applications. The integration of manipulation functionalities into chip-scale devices is essential for d…

quant-ph2026

Quantum inference on a classically trained quantum extreme learning machine

Emanuele Brusaschi, Marco Clementi, Marco Liscidini +3

Quantum extreme learning machines (QELMs) are unconventional computing architectures that bear remarkable promise in both classical and quantum machine-learning tasks, such as the…

quant-ph2026

Fully integrated quantum frequency processor on a silicon chip

Sara Congia, Leopold Virot, Elena Rovetta +5

Frequency-bin encoding has recently emerged as a powerful approach for photonic quantum information processing, offering high dimensionality, gate-parallelization, and compatibilit…

quant-ph2026

Time-resolved certification of frequency-bin entanglement over multi-mode channels

Stéphane Vinet, Marco Clementi, Marcello Bacchi +7

Frequency-bin entangled photons can be efficiently produced on-chip which offers a scalable, robust and low-footprint platform for quantum communication, particularly well-suited f…