1,011 to 1,020 of 1,307 Results
Mar 8, 2021 -
Replication Data for: Electrically programmable terahertz diatomic metamolecules for chiral optical control
Unknown - 910.9 KB -
MD5: 83846eba6cbfe1907ef2697496a865cb
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Mar 8, 2021 -
Replication Data for: Electrically programmable terahertz diatomic metamolecules for chiral optical control
Unknown - 5.3 MB -
MD5: 41c65ba778596d9d58e2e7baa33884b9
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Mar 8, 2021 -
Replication Data for: Electrically programmable terahertz diatomic metamolecules for chiral optical control
Unknown - 317.6 KB -
MD5: d1a5cf5b5b598cd42e959b8f9c90325c
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Mar 8, 2021 -
Replication Data for: Electrically programmable terahertz diatomic metamolecules for chiral optical control
RAR Archive - 7.2 MB -
MD5: 28f622d4854980c1c6dcf2e8284ac6d5
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Mar 8, 2021 -
Replication Data for: Electrically programmable terahertz diatomic metamolecules for chiral optical control
Plain Text - 103 B -
MD5: 059aad7d32d7315b25d411dc5e538501
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Mar 8, 2021 - THz metamaterials
Cong, Longqing; Singh, Ranjan, 2021, "Replication Data for: Symmetry-protected dual bound states in the continuum in metamaterials", https://doi.org/10.21979/N9/ZUUGII, DR-NTU (Data), V1
Bound state in the continuum (BIC) is a mathematical concept with an infinite radiative quality factor (Q) that exists only in an ideal infinite array of resonators. In photonics, it is essential to achieve high Q resonances for enhanced light-mater interactions that could enable... |
Mar 8, 2021 -
Replication Data for: Symmetry-protected dual bound states in the continuum in metamaterials
Adobe PDF - 869.7 KB -
MD5: 438d7eb10e211317d452083d036d0aff
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Mar 8, 2021 -
Replication Data for: Symmetry-protected dual bound states in the continuum in metamaterials
RAR Archive - 8.5 MB -
MD5: 08bd585f8b57b8a2dd095a9676967eb4
Original figures |
Mar 8, 2021 -
Replication Data for: Symmetry-protected dual bound states in the continuum in metamaterials
Unknown - 7.3 MB -
MD5: 80c1b7d3d04a1985b0f7f372539a9242
Original data |
Mar 3, 2021 - Manukumara Manjappa
Manjappa, Manukumara; Pitchappa, Prakash; Singh, Navab; Wang, Nan; Zheludev, Nikolay I.; Lee, Chengkuo; Singh, Ranjan, 2021, "Replication Data for: Reconfigurable MEMS Fano metasurfaces with multiple-input-output states for logic operations at terahertz frequencies", https://doi.org/10.21979/N9/XZATO7, DR-NTU (Data), V1, UNF:6:I6/Wbbi7GhGtLQPuFCjVsA== [fileUNF]
A broad range of dynamic metasurfaces has been developed for manipulating the intensity, phase and wavefront of electromagnetic radiation from microwaves to optical frequencies. However, most of these metasurfaces operate in single-input-output state. Here, we experimentally demo... |
