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DR-NTU (Data) is for research data deposit. For research paper deposits, please use DR-NTU.

Mission: DR-NTU (Data) curates, stores, preserves, makes available and enables the download of digital data generated by the NTU research community. The repository develops and provides guidance for managing, sharing, and reusing research data to promote responsible data sharing in support of open science and research integrity.

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What can be deposited? Final, non-sensitive research data from projects carried out at NTU. The uploaded content must not infringe upon the copyrights or other intellectual property rights, and must be void of all identifiable information.

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63,811 to 63,820 of 71,303 Results
Unknown - 127.3 KB - MD5: 88e8e97755f1434bd9c5f39f25771829
Data
Simulated transmission amplitude difference (ΔT) with an analyte of thickness 40 nm but a different refractive index placed on the TASR metamaterial residing on COC substrates, with respect to the corresponding uncoated metamaterials.
Unknown - 124.4 KB - MD5: f664e4521b045f9d33bc2f97e12ca344
Data
Simulated transmission amplitude difference (ΔT) with an analyte of thickness 40 nm but a different refractive index placed on the TASR metamaterial residing on Kapton substrates, with respect to the corresponding uncoated metamaterials.
Unknown - 12.1 KB - MD5: 51160761e5f231cb184520d1cf24cfbd
Data
Peak-to-peak transmission amplitude difference (ΔT) with a change in the refractive indices of the 40 nm thick analyte placed on the TASR metamaterial residing on COC and Kapton substrates.
JPEG Image - 908.5 KB - MD5: 3a4a6e2aea2a93e4573f90688fc92e5b
Data
Experimentally measured thickness of the thermally deposited 7 nm Ge thin film using Atomic Force Microscopy (AFM).
TIFF Image - 2.6 MB - MD5: 530c82d75bbabd1f7dc3cafcce92327e
Data
Experimentally measured thickness of the thermally deposited 7 nm Ge thin film using Atomic Force Microscopy (AFM).
PNG Image - 431.7 KB - MD5: da170156cf273377f07519ed5e0827a3
Data
Experimentally measured thickness of the thermally deposited 20 nm Ge thin film using Atomic Force Microscopy (AFM).
Unknown - 223.3 KB - MD5: cc1004dc1be8717d5514543ee4ee5c0a
Data
Peak-to-peak phase difference (|Δϕ) with change in refractive indices of the 40 nm thick analyte placed on TASR metamaterial residing on COC and Kapton substrates.
Unknown - 375.8 KB - MD5: d73148fa9407a35c81c6f4efd67cf9ee
Data
a) Simulated transmission amplitude spectra of TASR metamaterial coated with 40 nm thick analyte of different refractive indices on the metamaterial sample residing on COC substrate. b) Simulated transmission amplitude spectra of TASR metamaterial coated with 40 nm thick analyte...
JPEG Image - 155.2 KB - MD5: d574fcac9487a1f9309c98e4ecfe8588
Data
Electric field distribution
Unknown - 44.2 KB - MD5: a8be0228b61f8c852b05fdbaa17479db
Data
Simulated transmission spectra of the metallic TASR metamaterial with an asymmetry of d = 10 micrometer.
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