7
program roles
1
leadership role
14
collaborators
2003–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
6 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Secure multiparty quantum computation (part 2) | QCRYPT 2013 | tutorial ▸ presenter | — |
| Secure multiparty quantum computation (part 1) | QCRYPT 2013 | tutorial ▸ presenter | — |
|
“Quantum Refrigerator.” ↗
|
QIP 2013 | regular | Daniel Gottesman, Avinatan Hassidim |
| Verifiable Quantum Secret Sharing and Secure Multi-Party Quantum Computation | QIP 2006 | regular | Claude Crepeau, Daniel Gottesman, Avinatan Hassidim, Adam Smith |
| Quantum Search in an Ordered List via Adaptive Learning | QIP 2006 | regular | Avinatan Hassidim |
| Simple security proof for quantum key distribution | QIP 2003 | invited ▸ presenter | — |
4 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Advantages of Global Entanglement-Distillation Policies in Quantum Repeater Chains | QIP 2026 | ▸Iftach Yakar |
| Fast and Simple One-Way High-Dimensional Quantum Key Distribution | QCRYPT 2021 | Kfir Sulimany, Rom Dudkiewicz, Simcha Korenblit, Hagai S. Eisenberg, Yaron Bromberg |
High-dimensional quantum key distribution (QKD) provides ultimate secure communication with secure key rates that cannot be obtained by QKD protocols with binary encoding. However, so far the proposed protocols required additional experimental resources, thus raising the cost of practical high-dimensional systems and limiting their use. Here, we analyze and demonstrate a novel scheme for fiber-based arbitrary-dimensional QKD, based on the most popular commercial hardware for binary time bins encoding. Quantum state transmission is tested over 40 km channel length of standard single-mode fiber, exhibiting a two-fold enhancement of the secret key rate in comparison to the binary Coherent One Way (COW) protocol, without introducing any hardware modifications. This work holds a great potential to enhance the performance of already installed QKD systems by software update alone. |
||
| Interactive Proofs For Quantum Computations | QIP 2009 | Elad Eban, Dorit Aharonov |
| The Pursuit for Uniqueness: Extending Valiant-Vazirani Theorem to the Probabilistic and Quantum Settings | QIP 2009 | Or Sattath, Dorit Aharonov, Fernando G. S. L. Brandão |
Committee service
| Conference | Committee | Position | Title |
|---|---|---|---|
| QIP 2025 | program | member | — |
| QIP 2020 | program | member | — |
| QCRYPT 2014 | program | member | — |
| TQC 2013 | program | member | — |
| QCRYPT 2012 | program | member | — |
| QIP 2012 | program | member | — |
| QIP 2010 | program | chair | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Avinatan Hassidim | 3 |
| Daniel Gottesman | 2 |
| Dorit Aharonov | 2 |
| Adam Smith | 1 |
| Claude Crepeau | 1 |
| Elad Eban | 1 |
| Fernando G. S. L. Brandão | 1 |
| Hagai S. Eisenberg | 1 |
| Iftach Yakar | 1 |
| Kfir Sulimany | 1 |
| Or Sattath | 1 |
| Rom Dudkiewicz | 1 |
| Simcha Korenblit | 1 |
| Yaron Bromberg | 1 |