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Vittorio Romano
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2020 – today
- 2024
- [j23]Giovanni Nastasi, Alfio Borzì, Vittorio Romano:
Optimal control of a semiclassical Boltzmann equation for charge transport in graphene. Commun. Nonlinear Sci. Numer. Simul. 132: 107933 (2024) - [j22]Vito Dario Camiola, Vittorio Romano, Giorgia Vitanza:
Wigner Equations for Phonons Transport and Quantum Heat Flux. J. Nonlinear Sci. 34(1): 10 (2024) - [c4]Giulia Elena Aliffi, Joao Baixinho, Dalibor Barri, Francesco Daghero, Nicola Di Carolo, Gabriele Faraone, Michelangelo Grosso, Daniele Jahier Pagliari, Jiri Jakovenko, Vladimír Janícek, Dario Licastro, Vazgen Melikyan, Matteo Risso, Vittorio Romano, Eugenio Serianni, Martin Stastný, Patrik Vacula, Giorgia Vitanza, Chen Xie:
AMBEATion: Analog Mixed-Signal Back-End Design Automation with Machine Learning and Artificial Intelligence Techniques. DATE 2024: 1-6 - [i1]Andrea Medaglia, Giovanni Nastasi, Vittorio Romano, Mattia Zanella:
Uncertainty quantification for charge transport in GNRs through particle Galerkin methods for the semiclassical Boltzmann equation. CoRR abs/2404.19602 (2024) - 2021
- [j21]Vito Dario Camiola, Liliana Luca, Vittorio Romano:
Correction: Camiola, V.D., et al. Equilibrium Wigner Function for Fermions and Bosons in the Case of a General Energy Dispersion Relation. Entropy 2020, 22, 1023. Entropy 23(4): 417 (2021) - [j20]Marco Coco, Giovanni Mascali, Vittorio Romano:
About the Definition of the Local Equilibrium Lattice Temperature in Suspended Monolayer Graphene. Entropy 23(7): 873 (2021) - 2020
- [j19]Giovanni Nastasi, Vittorio Romano:
A full coupled drift-diffusion-Poisson simulation of a GFET. Commun. Nonlinear Sci. Numer. Simul. 87: 105300 (2020) - [j18]Vito Dario Camiola, Liliana Luca, Vittorio Romano:
Equilibrium Wigner Function for Fermions and Bosons in the Case of a General Energy Dispersion Relation. Entropy 22(9): 1023 (2020)
2010 – 2019
- 2018
- [j17]Andrea Patanè, Andrea Santoro, Vittorio Romano, Antonino La Magna, Giuseppe Nicosia:
Enhancing quantum efficiency of thin-film silicon solar cells by Pareto optimality. J. Glob. Optim. 72(3): 491-515 (2018) - 2017
- [j16]Andrea Patanè, Andrea Santoro, Piero Conca, Giovanni Carapezza, Antonino La Magna, Vittorio Romano, Giuseppe Nicosia:
Multi-objective optimization and analysis for the design space exploration of analog circuits and solar cells. Eng. Appl. Artif. Intell. 62: 373-383 (2017) - [j15]Giovanni Mascali, Vittorio Romano:
Exploitation of the Maximum Entropy Principle in Mathematical Modeling of Charge Transport in Semiconductors. Entropy 19(1): 36 (2017) - [j14]Giovanni Mascali, Vittorio Romano:
Charge Transport in Graphene including Thermal Effects. SIAM J. Appl. Math. 77(2): 593-613 (2017) - 2015
- [j13]Vittorio Romano, Armando Majorana, Marco Coco:
DSMC method consistent with the Pauli exclusion principle and comparison with deterministic solutions for charge transport in graphene. J. Comput. Phys. 302: 267-284 (2015) - 2013
- [j12]Giovanni Stracquadanio, Vittorio Romano, Giuseppe Nicosia:
Semiconductor device design using the BiMADS algorithm. J. Comput. Phys. 242: 304-320 (2013) - [j11]Vito Dario Camiola, Giovanni Mascali, Vittorio Romano:
Simulation of a double-gate MOSFET by a non-parabolic energy-transport subband model for semiconductors based on the maximum entropy principle. Math. Comput. Model. 58(1-2): 321-343 (2013) - [j10]Vito Dario Camiola, Vittorio Romano:
2DEG-3DEG Charge Transport Model for MOSFET Based on the Maximum Entropy Principle. SIAM J. Appl. Math. 73(4): 1439-1459 (2013) - 2012
- [j9]Giovanni Mascali, Vittorio Romano:
A non parabolic hydrodynamical subband model for semiconductors based on the maximum entropy principle. Math. Comput. Model. 55(3-4): 1003-1020 (2012) - 2011
- [j8]Giovanni Mascali, Vittorio Romano:
A hydrodynamical model for holes in silicon semiconductors: The case of non-parabolic warped bands. Math. Comput. Model. 53(1-2): 213-229 (2011) - 2010
- [c3]Giovanni Stracquadanio, Concetta Drago, Vittorio Romano, Giuseppe Nicosia:
Effective design of semiconductor devices using evolutionary-based derivative free optimization. IEEE Congress on Evolutionary Computation 2010: 1-7 - [c2]Giovanni Stracquadanio, Concetta Drago, Vittorio Romano, Giuseppe Nicosia:
Multi-objective optimization of doping profile in semiconductor design. GECCO 2010: 1243-1250 - [c1]Giovanni Stracquadanio, Concetta Drago, Vittorio Romano, Giuseppe Nicosia:
An Immunological Algorithm for Doping Profile Optimization in Semiconductors Design. ICARIS 2010: 213-222
2000 – 2009
- 2009
- [j7]Salvatore La Rosa, Giovanni Mascali, Vittorio Romano:
Exact Maximum Entropy Closure of the Hydrodynamical Model for Si Semiconductors: The 8-Moment Case. SIAM J. Appl. Math. 70(3): 710-734 (2009) - 2007
- [j6]Vittorio Romano:
2D numerical simulation of the MEP energy-transport model with a finite difference scheme. J. Comput. Phys. 221(2): 439-468 (2007) - 2001
- [j5]Orazio Muscato, Vittorio Romano:
Simulation of Submicron Silicon Diodes with a Non-Parabolic Hydrodynamical Model Based on the Maximum Entropy Principle. VLSI Design 13(1-4): 273-279 (2001) - 2000
- [j4]Angelo Marcello Anile, Giovanni Russo, Vittorio Romano:
Extended Hydrodynamical Model of Carrier Transport in Semiconductors. SIAM J. Appl. Math. 61(1): 74-101 (2000) - [j3]Salvatore Fabio Liotta, Vittorio Romano, Giovanni Russo:
Central Schemes for Balance Laws of Relaxation Type. SIAM J. Numer. Anal. 38(4): 1337-1356 (2000) - [j2]Angelo Marcello Anile, Orazio Muscato, Vittorio Romano:
Moment Equations with Maximum Entropy Closure for Carrier Transport in Semiconductor Devices: Validation in Bulk Silicon. VLSI Design 10(4): 335-354 (2000)
1990 – 1999
- 1998
- [j1]Angelo Marcello Anile, Vittorio Romano, Giovanni Russo:
Hyperbolic Hydrodynamical Model of Carrier Transport in Semiconductors. VLSI Design 8(1-4): 521-525 (1998)
Coauthor Index
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last updated on 2024-10-01 21:38 CEST by the dblp team
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