Dr. Hsiang-Hua Jen (Atomic Physics and Optical Science)
Tel of Office:
+886-2-2366-8261
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+886-2-2366-8273
Latest Research Work
S. Goswami, C. -H. Chien, N. Sinclair, B. Grinkemeyer, S. Bennetts, Y. -C. Chen, and H. H. Jen
Phys. Rev. Lett. 136, 050802 (2026).

The so-called state-carving protocol generates high-fidelity entangled states at an atom-cavity interface without requiring high cavity cooperativity. However, this protocol is limited to 50% efficiency, which restricts its applicability. We propose a simple modification to the state-carving protocol to achieve efficient entanglement generation, with unit probability in principle. Unlike previous two-photon schemes, ours employs only one photon which interacts with the atoms twice - avoiding separate photon detections which causes irrecoverable probability loss. We present a detailed description and performance evaluation of our protocol under non-ideal conditions. High fidelity of 0.999 can be achieved with cavity cooperativity of only 34. Efficient state-carving paves the way for large-scale entanglement generation at cavity-interfaces for modular quantum computing, quantum repeaters and creating arbitrary shaped atomic graph states, essential for one-way quantum computing.
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Latest update 2026-02-26 15:10:47