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Vladimir Liberman
Vladimir Liberman
MIT Lincoln Laboratory
Verified email at ll.mit.edu
Title
Cited by
Cited by
Year
Broadband transparent optical phase change materials for high-performance nonvolatile photonics
Y Zhang, JB Chou, J Li, H Li, Q Du, A Yadav, S Zhou, MY Shalaginov, ...
Nature communications 10 (1), 4279, 2019
8922019
Electrically reconfigurable non-volatile metasurface using low-loss optical phase-change material
Y Zhang, C Fowler, J Liang, B Azhar, MY Shalaginov, S Deckoff-Jones, ...
Nature Nanotechnology 16 (6), 661-666, 2021
3702021
Reconfigurable all-dielectric metalens with diffraction-limited performance
MY Shalaginov, S An, Y Zhang, F Yang, P Su, V Liberman, JB Chou, ...
Nature communications 12 (1), 1225, 2021
2772021
Super‐resolution microscopy by movable thin‐films with embedded microspheres: resolution analysis
KW Allen, N Farahi, Y Li, NI Limberopoulos, DE Walker Jr, AM Urbas, ...
Annalen der Physik 527 (7-8), 513-522, 2015
1672015
Ultraviolet spectroscopy and UV lasers
P Misra, MA Dubinskii
CRC Press, 2002
1442002
Method of forming active devices of different gatelengths using lithographic printed gate images of same length
JW Golz, B Khan, JC Liu, CJ Waskiewicz, TJ Wu
US Patent 6,703,312, 2004
1172004
Molecular beam epitaxy of high quality Hg1− xCdxTe films with control of the composition distribution
VS Varavin, SA Dvoretsky, VI Liberman, NN Mikhailov, YG Sidorov
Journal of crystal growth 159 (1-4), 1161-1166, 1996
1141996
Review of technology for 157-nm lithography
AK Bates, M Rothschild, TM Bloomstein, TH Fedynyshyn, RR Kunz, ...
IBM Journal of Research and development 45 (5), 605-614, 2001
1122001
A nanoparticle convective directed assembly process for the fabrication of periodic surface enhanced Raman spectroscopy substrates
V Liberman, C Yilmaz, TM Bloomstein, S Somu, Y Echegoyen, ...
Adv. Mater 22 (38), 4298-4302, 2010
1052010
Multi‐level electro‐thermal switching of optical phase‐change materials using graphene
C Ríos, Y Zhang, MY Shalaginov, S Deckoff-Jones, H Wang, S An, ...
Advanced Photonics Research 2 (1), 2000034, 2021
922021
Experimentation and modeling of organic photocontamination on lithographic optics
RR Kunz, V Liberman, DK Downs
Journal of Vacuum Science & Technology B: Microelectronics and Nanometer …, 2000
902000
Materials issues for optical components and photomasks in 157 nm lithography
V Liberman, TM Bloomstein, M Rothschild, JHC Sedlacek, RS Uttaro, ...
Journal of Vacuum Science & Technology B: Microelectronics and Nanometer …, 1999
891999
157 nm: Deepest deep-ultraviolet yet
M Rothschild, TM Bloomstein, JE Curtin, DK Downs, TH Fedynyshyn, ...
Journal of Vacuum Science & Technology B: Microelectronics and Nanometer …, 1999
871999
Periodically poled BaMgF4 for ultraviolet frequency generation
SC Buchter, TY Fan, V Liberman, JJ Zayhowski, M Rothschild, EJ Mason, ...
Optics Letters 26 (21), 1693-1695, 2001
822001
Liquid immersion lithography: Why, how, and when?
M Rothschild, TM Bloomstein, RR Kunz, V Liberman, M Switkes, ...
Journal of Vacuum Science & Technology B: Microelectronics and Nanometer …, 2004
732004
Mid-infrared photothermal heterodyne spectroscopy in a liquid crystal using a quantum cascade laser
A Mërtiri, T Jeys, V Liberman, MK Hong, J Mertz, H Altug, S Erramilli
Applied Physics Letters 101 (4), 2012
712012
Permittivity evaluation of multilayered hyperbolic metamaterials: Ellipsometry vs. reflectometry
T Tumkur, Y Barnakov, ST Kee, MA Noginov, V Liberman
Journal of Applied Physics 117 (10), 2015
692015
Broadband transparent optical phase change materials
Y Zhang, J Li, J Chou, Z Fang, A Yadav, H Lin, Q Du, J Michon, Z Han, ...
CLEO: Science and Innovations, JTh5C. 4, 2017
652017
The growth of high‐quality MCT films by MBE using in‐situ ellipsometry
KK Svitashev, SA Dvoretsky, YG Sidorov, VA Shvets, AS Mardezhov, ...
Crystal Research and Technology 29 (7), 931-937, 1994
641994
Recent trends in optical lithography
M Rothschild, TM Bloomstein, TH Fedynyshyn, RR Kunz, V Liberman, ...
Lincoln Laboratory Journal 14 (2), 221-236, 2003
632003
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Articles 1–20