Fast Quantum Gates with Electric Field Pulses and Optical Tweezers in Trapped Ions
| Authors | |
|---|---|
| Publication date | 06-2025 |
| Journal | Entropy |
| Article number | 595 |
| Volume | Issue number | 27 | 6 |
| Number of pages | 15 |
| Organisations |
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| Abstract |
We propose a two-qubit phase gate based on trapped ions that uses fast electric field pulses and spin-dependent local traps generated by optical tweezers. The phases are engineered by spin-dependent coherent evolution, interspersed with momentum kicks. We derive a set of commensurability conditions and expressions for the spin-dependent accumulated phase that, when satisfied, realize the target two-qubit phase gate within tens of microseconds. We study the scalability of our proposal in larger-ion crystals and demonstrate the existence of solutions with up to four ions. Gates in larger crystals should also be possible but will require more commensurability conditions to be fulfilled. |
| Document type | Article |
| Language | English |
| Published at | https://doi.org/10.3390/e27060595 |
| Other links | https://www.scopus.com/pages/publications/105009030919 |
| Downloads |
entropy-27-00595-v2
(Final published version)
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