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20232026
most citedTelecom band quantum dot technologies for long-distance quantum networks

1 citations · 1 across the 4 of their papers we have counts for

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quant-ph2026

Surface passivation for narrowing optical linewidth of silicon T centers in nanophotonic devices

Fariba Islam, Chang-Min Lee, Kyu-Young Kim +4

Silicon T centers are promising spin-photon interfaces in solid-state platforms for telecom-compatible, scalable quantum information technologies. A major challenge for T centers i…

quant-ph2026

Bright Telecom Spin-Photon Interface in Silicon Photonics

Carolina Crosta, Amirehsan Alizadehherfati, Purbita Purkayastha +5

Silicon is an attractive host for scalable quantum photonics, but the absence of bright telecom-band emitters with optically addressable spin states has limited its use for spin-ph…

quant-ph20247 cited

Long-lived quantum correlation by cavity-mediated subradiance

Kyu-Young Kim, Jin Hee Lee, Woong Bae Jeon +5

Cooperative effects such as super(sub)radiance in quantum systems arise from the interplay among quantum emitters. While bright superradiant states have been extensively studied an…

quant-ph2024

Efficient, indistinguishable telecom C-band photons using a tapered nanobeam

Mohammad Habibur Rahaman, Samuel Harper, Chang-Min Lee +7

Telecom C-band single photons exhibit the lowest attenuation in optical fibers, enabling long-haul quantum-secured communication. However, efficient coupling with optical fibers is…

quant-ph20231 cited

Telecom band quantum dot technologies for long-distance quantum networks

Ying Yu, Shunfa Liu, Chang-Min Lee +5

A future quantum internet is expected to generate, distribute, store and process quantum bits (qubits) over the globe by linking different quantum nodes via quantum states of light…