221 to 230 of 300 Results
TIFF Image - 135.4 KB -
MD5: 2df13bf5241c933a97adde8ff94f8111
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MATLAB Source Code - 38 B -
MD5: f55315b961f935587a094d3d67fffec5
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TIFF Image - 131.1 KB -
MD5: 45997ca06b277d65d3a5edf42f720920
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Unknown - 2.0 MB -
MD5: b18c2577cc90bc34d71a613ecdc98bf0
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PNG Image - 47.1 KB -
MD5: 0edc658c86fc793329b08aa7ee431f20
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Jun 27, 2022
Kumar, Abhishek; Gupta, Manoj; Pitchappa, Prakash; Tan, Thomas Caiwei; Chattopadhyay, Udvas; Ducournau, Guillaume; Wang, Nan; Chong, Yidong; Singh, Ranjan, 2022, "Replication Data for: Active Ultrahigh‐Q (0.2 × 106) THz Topological Cavities on a Chip", https://doi.org/10.21979/N9/2BSEXR, DR-NTU (Data), V1
Rapid scaling of semiconductor devices has led to an increase in the number of processor cores and integrated functionalities onto a single chip to support the growing demands of high-speed and large volume consumer electronics. This burgeoning demand for an ever-increasing on-ch... |
Jun 27, 2022 -
Replication Data for: Active Ultrahigh‐Q (0.2 × 106) THz Topological Cavities on a Chip
Unknown - 608.1 KB -
MD5: 50b9c30771603b2ffc7194f989d44949
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Jun 27, 2022 -
Replication Data for: Active Ultrahigh‐Q (0.2 × 106) THz Topological Cavities on a Chip
Unknown - 2.7 MB -
MD5: 06ba9cb4dc07e1b7e11d1a647ea88cc8
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Jun 27, 2022 -
Replication Data for: Active Ultrahigh‐Q (0.2 × 106) THz Topological Cavities on a Chip
Unknown - 10.2 MB -
MD5: 0a3676e2754bb9dfc7ec5d7e6a8965f6
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Jun 27, 2022 -
Replication Data for: Active Ultrahigh‐Q (0.2 × 106) THz Topological Cavities on a Chip
Unknown - 1.4 MB -
MD5: 8f50dbc84b665e47e541843f9196136d
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