34
collaborators
2013–2025
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
2 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| No-Go Theorems for Universal Entanglement Purification | QIP 2025 | regular | ▸Allen Zang, Xinan Chen, Eric Chitambar, Martin Suchara |
| Entanglement-based High-Dimensional Quantum Key Distribution | QCRYPT 2014 | regular | Catherine Lee, Zheshen Zhang, Hongchao Zhou, Jacob Mower, Greg Steinbrecher, Ligong Wang, Robert D. Horansky, Varum B. Verma, Adriana E. Lita, Richard P. Mirin, Thomas Gerrits, Alessandro Restelli, Joshua C. Bienfang, Francesco Marsili, Matthew D. Shaw, Sae Woo Nam, Gregory W. Wornell, Dirk Englund, Jeffrey H. Shapiro, ▸Franco N. C. Wong |
4 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Quantum Advantage in Distributed Sensing with Noisy Quantum Networks | QIP 2025 | Allen Zang, Alexander Kolar, Alvin Gonzales, Joaquin Chung, Stephen K. Gray, Rajkumar Kettimuthu, Zain Saleem |
| SiC micro-cavity enhanced quantum memory for fiber-based quantum communication and networks | QCRYPT 2024 | Lijun Ma, Qing Li, Oliver Slattery |
Quantum memory is an essential device for quantum communication and network. We are working to realize a SiC-based micro-cavity source with integrated quantum memory at the telecom band. A low loss SiC photonic devices are fabricated using high-quality-factor micro-ring resonators for the efficient generation of entangled photon pairs, and atomic frequency comb quantum memories based on spin-initialized 167Er:YSO crystals realize the storage of photons. Such memories are expected to generate remote entanglement between nodes in quantum networks. |
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| No-Go Theorems on Fidelity-Preserving Entanglement Purification | TQC 2024 | Allen Zang, Xinan Chen, Eric Chitambar, Martin Suchara |
| Experimental demonstration of secure communication based on quantum illumination | QCRYPT 2013 | Zheshen Zhang, Maria Tengner, Franco N. C. Wong, Jeffrey H. Shapiro |
We report the first experimental demonstration of an entanglement-based secure communication protocol that is resilient to entanglement-breaking loss and noise on the communication channel. Passive eavesdropping immunity is demonstrated in bit-error rate measurements and Alice’s information advantage over Eve is estimated. |
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Collaborators
| Co-author | Joint talks |
|---|---|
| Allen Zang | 3 |
| Eric Chitambar | 2 |
| Franco N. C. Wong | 2 |
| Jeffrey H. Shapiro | 2 |
| Martin Suchara | 2 |
| Xinan Chen | 2 |
| Zheshen Zhang | 2 |
| Adriana E. Lita | 1 |
| Alessandro Restelli | 1 |
| Alexander Kolar | 1 |
| Alvin Gonzales | 1 |
| Catherine Lee | 1 |
| Dirk Englund | 1 |
| Francesco Marsili | 1 |
| Greg Steinbrecher | 1 |
| Gregory W. Wornell | 1 |
| Hongchao Zhou | 1 |
| Jacob Mower | 1 |
| Joaquin Chung | 1 |
| Joshua C. Bienfang | 1 |