24
collaborators
2021–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
6 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Digital signatures with classical shadows on near-term quantum computers | TQC 2026 | Pradeep Niroula, Minzhao Liu, Sivaprasad Omanakuttan, David Amaro, Shouvanik Chakrabarti, Soumik Ghosh, Zichang He, Yuwei Jin, Fatih Kaleoglu, Rohan S. Kumar, Michael Perlin, Akshay Seshadri, Matthew Steinberg, Joseph Sullivan, Jacob Watkins, Henry Yuen, Ruslan Shaydulin |
Quantum mechanics provides cryptographic primitives whose security is grounded in hardness assumptions independent of those underlying classical cryptography. However, existing proposals require low-noise quantum communication and long-lived quantum memory, capabilities which remain challenging to realize in practice. In this work, we introduce a quantum digital signature scheme that operates with only classical communication, using the classical shadows of states produced by random circuits as public keys. We provide theoretical and numerical evidence supporting the conjectured hardness of learning the private key (the circuit) from the public key (the shadow). A key technical ingredient enabling our scheme is an improved state-certification primitive that achieves higher noise tolerance and lower sample complexity than prior methods. We realize this certification by designing a high-rate error-detecting code tailored to our random-circuit ensemble and experimentally generating shadows for 32-qubit states using circuits with ≥ 80 logical (≥ 582 physical) two-qubit gates, attaining 0.90±0.01 fidelity. With increased number of measurement samples, our hardware-demonstrated primitives realize a proof-of-principle quantum digital signature, demonstrating the near-term feasibility of our scheme. |
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| Monogamy of Entanglement Bounds and Improved Approximation Algorithms for Qudit Hamiltonians | QIP 2025 | Zackary Jorquera, Juspreet Singh Sandhu, Alexandra Kolla, Stuart Wayland |
| A quantum advantage over classical for local max cut | QIP 2024 | Alexandra Kolla, Charlie Carlson, Zackary Jorquera |
| Approximation Algorithms for Quantum Max-d-Cut | QIP 2024 | Zackary Jorquera, Stuart Wayland, Alexandra Kolla, Charlie Carlson |
| Approximation Algorithms for Quantum Max-d-Cut | TQC 2024 | Zackary Jorquera, Stuart Wayland, Alexandra Kolla, Charlie Carlson |
| Quantum vs Classical Local Algorithms for Local MaxCut | QIP 2021 | Adam Bouland, Charlie Carlson, Alex Kolla |
Collaborators
| Co-author | Joint talks |
|---|---|
| Alexandra Kolla | 4 |
| Charlie Carlson | 4 |
| Zackary Jorquera | 4 |
| Stuart Wayland | 3 |
| Adam Bouland | 1 |
| Akshay Seshadri | 1 |
| Alex Kolla | 1 |
| David Amaro | 1 |
| Fatih Kaleoglu | 1 |
| Henry Yuen | 1 |
| Jacob Watkins | 1 |
| Joseph Sullivan | 1 |
| Juspreet Singh Sandhu | 1 |
| Matthew Steinberg | 1 |
| Michael Perlin | 1 |
| Minzhao Liu | 1 |
| Pradeep Niroula | 1 |
| Rohan S. Kumar | 1 |
| Ruslan Shaydulin | 1 |
| Shouvanik Chakrabarti | 1 |