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Lijuan Zhang

Researcher at China Academy of Engineering Physics

Publications -  20
Citations -  412

Lijuan Zhang is an academic researcher from China Academy of Engineering Physics. The author has contributed to research in topics: Laser & Etching (microfabrication). The author has an hindex of 6, co-authored 16 publications receiving 316 citations. Previous affiliations of Lijuan Zhang include University of Science and Technology of China.

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Shape-dependent interplay between oxygen vacancies and Ag–CeO2 interaction in Ag/CeO2 catalysts and their influence on the catalytic activity

TL;DR: In this paper, the interplay between oxygen vacancies and Ag-CeO 2 interaction has been investigated in the context of metal-O 2 catalysts and the shape of the CeO 2 support.
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Influence of pulse length on heat affected zones of evaporatively-mitigated damages of fused silica optics by CO2 laser

TL;DR: In this article, the influence of pulse length on heat affected zones of evaporatively-mitigated damages was investigated in order to optimize the CO2 laser-based mitigation process of large aperture fused silica optics for high power laser facilities.
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Room-temperature ferromagnetism observed in C-/N-/O-implanted MgO single crystals

TL;DR: In this article, MgO single crystals were implanted with 70 keV C/N/O ions at room temperature with respective doses of 2 x 10(16) and 2x 10(17) ions/cm(2), all samples with high-dose implantation showed room temperature hysteresis in magnetization loops.
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An investigation on 800 nm femtosecond laser ablation of K9 glass in air and vacuum

TL;DR: In this paper, the authors studied the ablation rate of K9 glass as a function of femtosecond laser fluences, and the typical ablation morphologies, e.g., smooth zone and laser-induced periodic surface structures (LIPSS), were also presented and illustrated.
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UV laser conditioning of the sol-gel SiO 2 film coated fused silica optics

TL;DR: In this paper, an experimental study of ultra-violet (UV) laser conditioning of sol-gel coated fused fused silica optics was carried out to increase the laser-induced damage threshold (LIDT).