14
collaborators
2022–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
2 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Measuring gravitational lensing time delays with quantum information processing | TQC 2026 | regular | William DeRocco, Shiming Gu, ▸Emil T. Khabiboulline, Soonwon Choi, Andrew Childs, Anson Hook, Alexey Gorshkov, Daniel Gottesman |
The gravitational fields of astrophysical bodies bend the light around them, creating multiple paths along which light from a distant source can arrive at Earth. Measuring the difference in photon arrival time along these different paths provides a means of determining the mass of the lensing system, which is otherwise difficult to constrain. This is particularly challenging in the case of microlensing, where the images produced by lensing cannot be individually resolved; existing proposals for detecting time delays in microlensed systems are significantly constrained due to the need for large photon flux and the loss of signal coherence when the angular diameter of the light source becomes too large. In this work, we propose a novel approach to measuring astrophysical time delays. Our method uses exponentially fewer photons than previous schemes, enabling observations that would otherwise be impossible. Our approach, which combines a quantum-inspired algorithm and quantum information processing technologies, saturates a provable lower bound on the number of photons required to find the time delay. Our scheme has multiple applications: we explore its use both in calibrating optical interferometric telescopes and in making direct mass measurements of ongoing microlensing events. To demonstrate the latter, we present a fiducial example of microlensed stellar flares sources in the Galactic Bulge. Though the number of photons produced by such events is small, we show that our photon-efficient scheme opens the possibility of directly measuring microlensing time delays using existing and near-future ground-based telescopes. |
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| Depth-efficient proofs of quantumness | QIP 2022 | regular ▸ presenter | Alexandru Gheorghiu |
4 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Measuring gravitational lensing time delays with quantum information processing | QIP 2026 | William DeRocco, Shiming Gu, ▸Emil T. Khabiboulline, Soonwon Choi, Andrew Childs, Anson Hook, Alexey Gorshkov, Daniel Eric Gottesman |
| Low-depth quantum symmetrization | QIP 2025 | Andrew Childs, Daniel Gottesman |
| Efficiently verifiable quantum advantage on near-term analog quantum simulators | QIP 2024 | Dhruv Devulapalli, Dominik Hangleiter, Yi-Kai Liu, Alicia Kollár, Alexey Gorshkov, Andrew Childs |
| Efficiently verifiable quantum advantage on near-term analog quantum simulators | TQC 2024 | Dhruv Devulapalli, Dominik Hangleiter, Yi-Kai Liu, Alicia Kollár, Alexey Gorshkov, Andrew Childs |
Collaborators
| Co-author | Joint talks |
|---|---|
| Andrew Childs | 5 |
| Alexey Gorshkov | 4 |
| Alicia Kollár | 2 |
| Anson Hook | 2 |
| Daniel Gottesman | 2 |
| Dhruv Devulapalli | 2 |
| Dominik Hangleiter | 2 |
| Emil T. Khabiboulline | 2 |
| Shiming Gu | 2 |
| Soonwon Choi | 2 |
| William DeRocco | 2 |
| Yi-Kai Liu | 2 |
| Alexandru Gheorghiu | 1 |
| Daniel Eric Gottesman | 1 |