pulsed laser ablation
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Plasmonics ◽  
2022 ◽  
Author(s):  
Laya Anjo ◽  
Ana Khajehnezhad ◽  
Amir Hossein Sari ◽  
Seyed Ali Sebt ◽  
Mukhlis M. Ismail

Author(s):  
Alto Osada ◽  
Atsushi Noguchi

Abstract Trapped-ion quantum technologies have been developed for decades toward applications such as precision measurement, quantum communication and quantum computation. Coherent manipulation of ions' oscillatory motions in an ion trap is important for quantum information processing by ions, however, unwanted decoherence caused by fluctuating electric-field environment often hinders stable and high-fidelity operations.. One way to avoid this is to adopt pulsed laser ablation for ion loading, a loading method with significantly reduced pollution and heat production. Despite the usefulness of the ablation loading such as the compatibility with cryogenic environment, randomness of the number of loaded ions is still problematic in realistic applications where definite number of ions are preferably loaded with high probability. %The ablation loading is proven to be useful, being even compatible with cryogenic environment, except for the randomness of the number of loaded ions. In this paper, we demonstrate an efficient loading of a single strontium ion into a surface electrode trap generated by laser ablation and successive photoionization. The probability of single-ion loading into a surface electrode trap is measured to be 82\,\%, and such a deterministic single-ion loading allows for loading ions into the trap one-by-one. Our results open up a way to develop more functional ion-trap quantum devices by the clean, stable, and deterministic ion loading.


2022 ◽  
Vol 275 ◽  
pp. 125229
Author(s):  
Alejandra Ancira-Cortez ◽  
Diana Trujillo-Benítez ◽  
Nallely Jiménez-Mancilla ◽  
Clara Santos-Cuevas ◽  
Enrique Morales-Avila ◽  
...  

2022 ◽  
Author(s):  
Wenjing Miao ◽  
Xinwen Gai ◽  
Fengyang Zhao ◽  
Jingang Wang

In this work, we synthesized 3-7 nm diameter tungsten disulfide quantum dots (WS2 QDs) by pulsed laser ablation in ethanol solvent, and observed strong, stable, excited independent blue emission. To...


Author(s):  
Fowzia S. Alamro ◽  
Arafat Toghan ◽  
Hoda A. Ahmed ◽  
Ayman M. Mostafa ◽  
Abbas I. Alakhras ◽  
...  

2021 ◽  
Vol 128 (1) ◽  
Author(s):  
Timothy I. Calver ◽  
Michael B. Shattan ◽  
Glen P. Perram

2021 ◽  
Author(s):  
Aleksandra Golubovskaya ◽  
Elena Fakhrutdinova ◽  
Valery Svetlichnyi

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