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Martino Aldrigo
Martino Aldrigo
Principal Researcher II at Lab4 - IMT, Bucharest (Romania)
Email verificata su imt.ro
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Anno
A tunable microwave slot antenna based on graphene
M Dragoman, D Neculoiu, AC Bunea, G Deligeorgis, M Aldrigo, ...
Applied Physics Letters 106 (15), 153101, 2015
702015
Very large phase shift of microwave signals in a 6 nm HfxZr1− xO2 ferroelectric at±3 V
M Dragoman, M Modreanu, IM Povey, S Iordanescu, M Aldrigo, ...
Nanotechnology 28 (38), 38LT04, 2017
362017
Extraordinary tunability of high-frequency devices using Hf0.3Zr0.7O2 ferroelectric at very low applied voltages
M Dragoman, M Aldrigo, M Modreanu, D Dragoman
Applied Physics Letters 110 (10), 103104, 2017
342017
Smart antennas based on graphene
M Aldrigo, M Dragoman, D Dragoman
Journal of Applied Physics 116, 114302-114302-5, 2014
282014
Towards a terahertz direct receiver based on graphene up to 10 THz
M Dragoman, M Aldrigo, A Dinescu, D Dragoman, A Costanzo
Journal of Applied Physics 115 (4), 044307-044307-7, 2014
282014
MoS2 thin films as electrically tunable materials for microwave applications
M Dragoman, A Cismaru, M Aldrigo, A Radoi, A Dinescu, D Dragoman
Applied Physics Letters 107 (24), 243109, 2015
242015
Exploitation of a novel magneto-dielectric substrate for miniaturization of wearable UHF antennas
M Aldrigo, A Costanzo, D Masotti, C Galassi
Materials Letters 87, 127-130, 2012
242012
Graphene rectenna for efficient energy harvesting at terahertz frequencies
M Dragoman, M Aldrigo
Applied Physics Letters 109 (11), 113105, 2016
232016
Graphene as a high impedance surface for ultra-wideband electromagnetic waves
M Aldrigo, M Dragoman, A Costanzo, D Dragoman
Journal of Applied Physics 114, 184308, 2013
232013
Harvesting Electromagnetic Energy in the-Band Using a Rectenna Formed by a Bow Tie Integrated With a 6-nm-Thick Au/HfO2/Pt Metal–Insulator–Metal Diode
M Aldrigo, M Dragoman, M Modreanu, I Povey, S Iordanescu, D Vasilache, ...
IEEE Transactions on Electron Devices 65 (7), 2973-2980, 2018
192018
Integration of antenna array and self-switching graphene diode for detection at 28 GHz
M Yasir, M Aldrigo, M Dragoman, A Dinescu, M Bozzi, S Iordanescu, ...
IEEE Electron Device Letters 40 (4), 628-631, 2019
182019
Carbon nanotube-based electromagnetic band gap resonator for CH4 gas detection
A Cismaru, M Aldrigo, A Radoi, M Dragoman
Journal of Applied Physics 119 (12), 124504, 2016
182016
Integration of non-linear, radiation, and propagation CAD techniques for MIMO link design
V Rizzoli, A Costanzo, D Masotti, M Aldrigo, F Donzelli, VD Esposti
International Journal of Microwave and Wireless Technologies 4 (2), 223-232, 2012
172012
2.55 GHz miniaturised phased antenna array based on 7 nm‐thick HfxZr1xO2 ferroelectrics
M Dragoman, M Modreanu, I Povey, S Iordanescu, M Aldrigo, A Dinescu, ...
Electronics Letters 54 (8), 469-470, 2018
122018
Phased antenna arrays based on non‐volatile resistive switches
M Dragoman, M Aldrigo, G Adam
IET Microwaves, Antennas & Propagation 11 (8), 1169-1173, 2017
122017
HfO2‐Based Ferroelectrics Applications in Nanoelectronics
M Dragoman, M Aldrigo, D Dragoman, S Iordanescu, A Dinescu, ...
physica status solidi (RRL)–Rapid Research Letters 15 (5), 2000521, 2021
112021
Compact, wearable antennas for battery-less systems exploiting fabrics and magneto-dielectric materials
A Costanzo, D Masotti, M Aldrigo
Electronics 3 (3), 474-490, 2014
102014
Numerical and experimental characterization of a button-shaped miniaturized UHF antenna on magneto-dielectric substrate
M Aldrigo, A Costanzo, D Masotti, C Baldisserri, I Dumitru, C Galassi
International Journal of Microwave and Wireless Technologies, 1-9, 2013
102013
Multifunctionalities of 2D MoS2 self-switching diode as memristor and photodetector
M Dragoman, M Aldrigo, D Dragoman, IM Povey, S Iordanescu, ...
Physica E: Low-dimensional Systems and Nanostructures 126, 114451, 2021
92021
Tunable Microwave Filters Using HfO2-Based Ferroelectrics
M Aldrigo, M Dragoman, S Iordanescu, F Nastase, S Vulpe
Nanomaterials 10 (10), 2057, 2020
92020
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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