1
program role
6
steering roles
47
collaborators
2011–2019
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
9 Talks
7 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Witnessing the quantum coherence in an atomic frequency comb system | QIP 2016 | Parisa Zarkeshian, Sandeep K. Goyal, Khabat Heshami, Neil Sinclair, Christoph Simon |
| A Multiplexed Light-matter Interface for Fibre-based Quantum Networks | QCRYPT 2015 | Erhan Saglamyurek, Marcel.Lí Grimau Puigibert, Qiang Zhou, Lambert Giner, Francesco Marsili, Varun Verma, Sae Woo Nam, Lee Oesterling, David Nippa, Daniel Oblak |
| Towards entanglement swapping with quantum-memory compatible photons | QCRYPT 2014 | Jeongwan Jin, Marcel.Lí Grimau Puigibert, Lambert Giner, Joshua A. Slater, Michael R.E. Lamont, Varun Verma, Matthew D. Shaw, Francesco Marsili, Sae Woo Nam, Daniel Oblak |
| Proof-of-principle quantum key distribution immune to detector attacks over a 60 dB loss channel | QCRYPT 2014 | Venkata Ramana Raju Valivarthi, Itzel Lucio-Martinez, P. Chan, Francesco Marsili, Varun Verma, Jeffrey. A. Stern, Matthew D. Shaw, Sae Woo Nam, Joshua A. Slater, Daniel Oblak |
| Efficient Bell state measurement with time-bin qubits | QCRYPT 2013 | Itzel Lucio-Martinez, Philip Chan, Raju Valivarthi, Joshua A. Slater, Francesco Marsili, Varun Verma, Jeffrey A. Stern, Matthew D. Shaw, Daniel Oblak, Sae Woo Nam |
We have performed Bell state measurements with time-bin qubits encoded into attenuated laser pulses using SNSPDs. Their short recovery time allows not only projections onto |?-> but also onto |?+> Bell states. Together with their high quantum efficiency, around 80% this yields an 60-fold improvement in the efficiency of BSMs with time-bin qubits compared to standard InGaAs detectors. Our results have an impact on quantum repeaters and measurement device independent QKD. |
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| Long-distance quantum communications using quantum memories having on-demand recall in the frequency domain | QCRYPT 2013 | Neil Sinclair, Erhan Saglamyurek, Hassan Mallazadeh, Joshua A. Slater, Mathew George, Raimund Ricken, Morgan Hedges, Daniel Oblak, Wolfgang Sohler |
If two parties were to exploit today’s quantum key distribution (QKD) systems, they would be limited to being at most ~100 km apart [1]. It is possible to overcome this limit with a quantum repeater that exploits quantum memories for qubit synchronization [1]. Among other criteria desired for quantum memories, simultaneous storage of multiple qubits (multiplexing) and recall of any desired qubit on-demand is required for a quantum repeater [1,2]. These properties are generally associated with the ability to trigger the re-emission of any previously stored qubit at a desired time [3]. We will argue that this view is too restricted, and that it is possible to build a quantum repeater using quantum memories that allow storage of frequency multiplexed qubits supplemented with frequency-selective read-out on demand. Furthermore we report on measurements exploiting the atomic frequency comb protocol in a Ti:Tm:LiNbO3 waveguide cooled to 3 K [4,5] that shows the required on-demand readout with average fidelities of 0.95 ± 0.03 thereby significantly violating the maximum fidelity of 0.67 possible using a classical memory. Our demonstration constitutes an important step towards the development of a quantum repeater. [1] N. Sangouard et al., Reviews of Modern Physics 83, 33 (2011). [2] A. I. Lvovsky, W. Tittel, and B.C. Sanders, Nature Photonics 3, 706 (2009). [3] C. Simon et al., Phys. Rev. Lett. 98, 190503 (2007). [4] M. Afzelius et al., Phys. Rev. A 79, 052329 (2009). [5] E. Saglamyurek et al., Nature 469, 512 (2011). |
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| Experimental demonstration of quantum private queries in a real-world environment | QCRYPT 2012 | Philip Chan, Itzel Lucio-Martinez, Xiaofan Mo, Christoph Simon |
Committee service
| Conference | Committee | Position | Title |
|---|---|---|---|
| QCRYPT 2019 | program | member | — |
| QCRYPT 2016 | steering | member | — |
| QCRYPT 2015 | steering | member | — |
| QCRYPT 2014 | steering | member | — |
| QCRYPT 2013 | steering | member | — |
| QCRYPT 2012 | steering | member | — |
| QCRYPT 2011 | steering | member | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Daniel Oblak | 9 |
| Joshua A. Slater | 8 |
| Francesco Marsili | 6 |
| Sae Woo Nam | 6 |
| Christoph Simon | 5 |
| Itzel Lucio-Martinez | 5 |
| Varun Verma | 5 |
| Erhan Saglamyurek | 4 |
| Matthew D. Shaw | 4 |
| Neil Sinclair | 4 |
| Philip Chan | 4 |
| Jeongwan Jin | 2 |
| Khabat Heshami | 2 |
| Lambert Giner | 2 |
| Marcel.Lí Grimau Puigibert | 2 |
| Mathew George | 2 |
| Qiang Zhou | 2 |
| Raimund Ricken | 2 |
| Venkata Ramana Raju Valivarthi | 2 |
| Wolfgang Sohler | 2 |