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Jul 5, 2025 -
Related Data for: High-efficiency Ultraviolet Generation in Resonance-Free Antiresonant Hollow-core Fiber
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MD5: 629bd258122475116cf1defc29d2dca2
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Jul 5, 2025 -
Related Data for: High-efficiency Ultraviolet Generation in Resonance-Free Antiresonant Hollow-core Fiber
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MD5: 53277bc32a97fdc0f743c946cde7ef3f
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Jul 5, 2025 -
Related Data for: High-efficiency Ultraviolet Generation in Resonance-Free Antiresonant Hollow-core Fiber
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MD5: a590e9794c6623e4a9458c104123ebbd
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Jul 5, 2025 -
Related Data for: High-efficiency Ultraviolet Generation in Resonance-Free Antiresonant Hollow-core Fiber
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MD5: a18377d5b096688783b4b4a9ab016b92
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Jul 5, 2025 -
Related Data for: High-efficiency Ultraviolet Generation in Resonance-Free Antiresonant Hollow-core Fiber
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MD5: d3b5d2ef53b0fcf1dd03781764865462
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Jul 5, 2025 -
Related Data for: High-efficiency Ultraviolet Generation in Resonance-Free Antiresonant Hollow-core Fiber
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MD5: 0df14824969ef55cbc22339412dcc75c
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Jul 5, 2025 -
Related Data for: High-efficiency Ultraviolet Generation in Resonance-Free Antiresonant Hollow-core Fiber
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MD5: 2958b4146ea1cc35c638d897702908b5
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Jul 5, 2025
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Jul 2, 2025
Research topics: Prof. Joseph Chang is multi-disciplinary engineer with research encompassing core CAS-related fields including analog, digital and aerospace circuits/systems; biomedical/life-sciences related-fields; and the emerging printed-electronics. |
Jun 26, 2025 - ROMULAN
Lee, Jinhen, 2025, "ROMULAN Dataset", https://doi.org/10.21979/N9/UOIXSK, DR-NTU (Data), V1
Raw data for the simulation of our oscillator design. |
