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Ultrafast, high repetition rate, ultraviolet, fiber-laser-based source: application towards Yb+ fast quantum-logic

机译:超快,高重复率,紫外线,基于光纤激光器的光源:应用于Yb +快速量子逻辑

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摘要

Trapped ions are one of the most promising approaches for the realization of a universal quantum computer. Faster quantum logic gates could dramatically improve the performance of trapped-ion quantum computers, and require the development of suitable high repetition rate pulsed lasers. Here we report on a robust frequency upconverted fiber laser based source, able to deliver 2.5 ps ultraviolet (UV) pulses at a stabilized repetition rate of 300.00000 MHz with an average power of 190 mW. The laser wavelength is resonant with the strong transition in Ytterbium (Yb+) at 369.53 nm and its repetition rate can be scaled up using high harmonic mode locking. We show that our source can produce arbitrary pulse patterns using a programmable pulse pattern generator and fast modulating components. Finally, simulations demonstrate that our laser is capable of performing resonant, temperature-insensitive, two-qubit quantum logic gates on trapped Yb+ ions faster than the trap period and with fidelity above 99%.
机译:捕获离子是实现通用量子计算机的最有前途的方法之一。更快的量子逻辑门可以极大地提高俘获离子量子计算机的性能,并且需要开发合适的高重复频率脉冲激光器。在这里,我们报道了一种基于稳健的频率上变频光纤激光器的光源,该光源能够以300.00000 MHz的稳定重复频率以平均190 mW的功率传送2.5 ps的紫外线(UV)脉冲。激光波长在369.53 nm处与with(Yb +)的强跃迁共振,并且可以使用高谐波锁模来放大其重复率。我们证明了我们的信号源可以使用可编程脉冲模式发生器和快速调制组件来产生任意脉冲模式。最后,仿真表明,我们的激光器能够对捕获的Yb +离子进行共振,对温度不敏感的二量子位量子逻辑门,其捕获速度快于捕获周期,并且保真度高于99%。

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