collaborators

6 papers

quant-ph2026

Scalable Quantum Reservoir Computing over Distributed Quantum Architectures

Ioannis Liliopoulos, Georgios D. Varsamis, Konstantinos Rallis +4

Reservoir computing provides an alternative to recurrent neural networks by overcoming the common problems of backpropagation through time and by training only a simple readout lay…

cond-mat.mes-hall2025

Impact of interdigitated electrodes design on the low frequency and random telegraph noise of single-layer graphene micro ribbons

Georgia Samara, Christoforos Theodorou, Alexandros Mavropoulis +3

High performance devices consisting of interdigitated electrodes (IDEs) on top of single-layer graphene (SLG) are candidates with favorable prospects for sensing applications. Grap…

cond-mat.mtrl-sci2025

Resistance Switching Properties of Stoichiometric and Nitrogen Implanted Silicon Nitride Nanolayers on N and P-Type Si Substrates

A. E. Mavropoulis, P. Karakolis, N. Vasileiadis +6

This paper examines the resistive switching characteristics of LPCVD SiNx MNOS ReRAM cells on both heavily doped n- and p-type silicon substrates, focusing on the effects of nitrog…

physics.app-ph2025

Memristor Applications: Nanodevices Redefining Technological Landscapes

Nikolaos Vasileiadis, Georgios Ch Sirakoulis, Panagiotis Dimitrakis

A memristor, a two-terminal nanodevice, has garnered substantial attention in recent years due to its distinctive properties and versatile applications. These nanoscale components,…

cond-mat.mtrl-sci2025

The Role of Tunneling Oxide in the Low Frequency Noise of Multi-level Silicon Nitride ReRAMs

Nikolaos Vasileiadis, Alexandros Mavropoulis, Christoforos Theodorou +1

This research explores the characteristics of two CMOS-compatible RRAM cells utilizing silicon nitride as the switching material. By employing SET/RESET pulse sequences, the study…

physics.app-ph2025

1/f and Random Telegraph Noise of Single-Layer Graphene Devices with Interdigitated Electrodes

Georgia Samara, Nikolaos Vasileiadis, Alexandros Mavropoulis +3

Single-layer Graphene (SLG) is a promising material for sensing applications. High performance graphene sensors can be achieved when Interdigitated Electrodes (IDE) are used. In th…