Technology Introduction:
Develops fiber-based OQC components/protocols: single-/dual-mode DFB lasers (<100kHz bandwidth, QBER <0.5%), low-noise telecom-band CMOS Ge-on-Si SPADs, polarization-selectable meta-surface SMF couplers for on-chip entangled photon processing. Si/Si3N4 QPIC enables system-level QKD/OQC. Adaptive software optimizes DPS, BB84, COW, Decoy, MDI protocols, supporting device/algorithm development for stable QKD data transmission and decodin
Industry Applicability:
The "DFBLD-based DPSK-QKD-OQC protocol distributor and transceiver for DWDM-PON," featuring injection-locked DPSK carriers, software-controlled self-feedback delay interferometers, pulsed-gated SPADs, Si-photonic QKD system-on-chip, and protocol simulation tools, ushers a new industrial era addressing urgent needs for enhanced quantum encryption in e-commerce, defense, and medical data streaming.
At present, the University consists of 16 colleges, 58 departments, 146 graduate institutes, as well as 34 Master's and PhD degree programs. NTU's programs cover a wide array of disciplines across science, arts, and the humanities, with up to 8,000 courses made available for selection each semester.
Name:
Phone:02-3366-4091
Address:No. 1, Sec. 4, Roosevelt Rd., Taipei 10617, Taiwan (R.O.C.)
Semiconductor Laser Quantum Key Distribution and Communication Tran sceiver
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Technology maturity:Others
Exhibiting purpose:Display of scientific results
Trading preferences:Negotiate by self
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