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Nikolaos Farmakidis
Nikolaos Farmakidis
Verified email at materials.ox.ac.uk
Title
Cited by
Cited by
Year
Plasmonic nanogap enhanced phase-change devices with dual electrical-optical functionality
N Farmakidis, N Youngblood, X Li, J Tan, JL Swett, Z Cheng, CD Wright, ...
Science Advances 5 (11), eaaw2687, 2019
1632019
In-memory photonic dot-product engine with electrically programmable weight banks
W Zhou, B Dong, N Farmakidis, X Li, N Youngblood, K Huang, Y He, ...
Nature Communications 14 (1), 2887, 2023
392023
Electronically reconfigurable photonic switches incorporating plasmonic structures and phase change materials
N Farmakidis, N Youngblood, JS Lee, J Feldmann, A Lodi, X Li, ...
Advanced Science 9 (20), 2200383, 2022
392022
Varifocal metalens using tunable and ultralow‐loss dielectrics
M Wang, JS Lee, S Aggarwal, N Farmakidis, Y He, T Cheng, H Bhaskaran
Advanced Science 10 (6), 2204899, 2023
222023
Quantifying liquid transport and patterning using atomic force microscopy
N Farmakidis, KA Brown
Langmuir 33 (21), 5173-5178, 2017
212017
Antimony as a programmable element in integrated nanophotonics
S Aggarwal, T Milne, N Farmakidis, J Feldmann, X Li, Y Shu, Z Cheng, ...
Nano Letters 22 (9), 3532-3538, 2022
202022
Integrated microfluidic selex using free solution electrokinetics
TR Olsen, C Tapia-Alveal, KA Yang, X Zhang, LJ Pereira, N Farmakidis, ...
Journal of the Electrochemical Society 164 (5), B3122, 2017
162017
Polarization-selective reconfigurability in hybridized-active-dielectric nanowires
JS Lee, N Farmakidis, CD Wright, H Bhaskaran
Science Advances 8 (24), eabn9459, 2022
152022
Phase-change materials for energy-efficient photonic memory and computing
W Zhou, N Farmakidis, J Feldmann, X Li, J Tan, Y He, CD Wright, ...
MRS Bulletin 47 (5), 502-510, 2022
152022
Artificial biphasic synapses based on nonvolatile phase‐change photonic memory cells
W Zhou, N Farmakidis, X Li, J Tan, S Aggarwal, J Feldmann, ...
physica status solidi (RRL)–Rapid Research Letters 16 (9), 2100487, 2022
132022
Higher-dimensional processing using a photonic tensor core with continuous-time data
B Dong, S Aggarwal, W Zhou, UE Ali, N Farmakidis, JS Lee, Y He, X Li, ...
Nature Photonics 17 (12), 1080-1088, 2023
82023
Exploiting rotational asymmetry for sub-50 nm mechanical nanocalligraphy
N Farmakidis, JL Swett, N Youngblood, X Li, C Evangeli, S Aggarwal, ...
Microsystems & Nanoengineering 7 (1), 84, 2021
52021
Nanoscale bilayer mechanical lithography using water as developer
Y Shu, BF Porter, EJH Soh, N Farmakidis, S Lim, Y Lu, JH Warner, ...
Nano Letters 21 (9), 3827-3834, 2021
52021
Event-driven adaptive optical neural network
F Brückerhoff-Plückelmann, I Bente, M Becker, N Vollmar, N Farmakidis, ...
Science Advances 9 (42), eadi9127, 2023
32023
Reduced rank photonic computing accelerator
S Aggarwal, B Dong, J Feldmann, N Farmakidis, WHP Pernice, ...
Optica 10 (8), 1074-1080, 2023
32023
Scalable high-precision trimming of photonic resonances by polymer exposure to energetic beams
N Farmakidis, H Yu, JS Lee, J Feldmann, M Wang, Y He, S Aggarwal, ...
Nano Letters 23 (11), 4800-4806, 2023
32023
Reconfigurable metasurfaces based on low-loss phase change material Sb2Se3
M Wang, JS Lee, S Aggarwal, N Farmakidis, J Tan, H Bhaskaran
CLEO: QELS_Fundamental Science, FTh2D. 2, 2022
22022
Plasmonically Enhanced Electronically Addressable Photonic Switches Incorporating Phase-Change Materials
N Farmakidis, N Youngblood, JS Lee, J Feldmann, WHP Pernice, ...
2022 Conference on Lasers and Electro-Optics (CLEO), 1-3, 2022
12022
Electro-optical phase-change devices approaching single pico-joule switching
Y He, N Farmakidis, S Aggarwal, JS Lee, M Wang, B Dong, Y Shu, ...
Integrated Optics: Devices, Materials, and Technologies XXVIII, PC128890A, 2024
2024
Bosonic control in integrated photonics
Y Zhang, N Farmakidis, JS Lee, B Dong, S Aggarwal, Y He, H Bhaskaran
Integrated Optics: Devices, Materials, and Technologies XXVIII, PC128890R, 2024
2024
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