Research topics:

Development of terahertz, infrared, and optical metamaterial based active and passive plasmonic devices.

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Unknown - 62.3 KB - MD5: ae64fbb95a11fe19d62d483a29713a1a
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Plain Text - 1.8 KB - MD5: 8ad22b155d6748bf97ac52920a0a99eb
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May 11, 2020 - Yogesh Kumar Srivastava
Srivastava, Yogesh Kumar; Cong, Longqing; Singh, Ranjan, 2020, "Replication Data for: Dual-surface flexible THz Fano metasensor", https://doi.org/10.21979/N9/MUB6QV, DR-NTU (Data), V1
Sensing technologies based on terahertz waves have immense potential due to their non-destructive, transparent, and fingerprint spectral response of several materials that are opaque to other parts of the electromagnetic spectrum. Terahertz metasensors reported so far merely expl...
Unknown - 781.5 KB - MD5: a610a27c58e79f17231781071ff3b8fe
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Dual-surface flexible Fano metasensor concept, 1b front surface sensing and 1d back surface sensing
Unknown - 829.9 KB - MD5: cea331494cc695b3863d57ea85cc3394
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Localized field intensity
Unknown - 1.6 MB - MD5: 290ed8f177e2f9ffb695bb1061786fad
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Sensitivity performance versus refractive index of the metasensor substrate
Unknown - 92.5 KB - MD5: 5735131332018a2db53b76cff9b862df
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Fano resonance shift by changing the analyte thickness for the metasensor with a silicon substrate (simulated)
Unknown - 114.8 KB - MD5: e58a759434fd69717d5cde1d71395460
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Simulated resonance frequency shift on varying analyte thickness coated on front surface
Unknown - 677.4 KB - MD5: 5cc518ddb9b1615ae503d25cbac78ab2
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Experimentally measured resonance frequency shift on varying analyte thickness coated on front surface
Unknown - 689.5 KB - MD5: ffcd37045d6f18feed7caa0b2afd8eb5
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Spatial distribution of the simulated fringing field on both sides of the metamaterial on a polyimide substrate
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