scholarly journals Heteroepitaxial Growth of High Optical Quality, Wafer-Scale van der Waals Heterostrucutres

Author(s):  
Katarzyna Ludwiczak ◽  
Aleksandra Krystyna Da̧browska ◽  
Johannes Binder ◽  
Mateusz Tokarczyk ◽  
Jakub Iwański ◽  
...  
2017 ◽  
Vol 5 (21) ◽  
pp. 1700373 ◽  
Author(s):  
Zhizhong Chen ◽  
Yiping Wang ◽  
Xin Sun ◽  
Yuwei Guo ◽  
Yang Hu ◽  
...  

Crystals ◽  
2021 ◽  
Vol 11 (5) ◽  
pp. 462
Author(s):  
Ji Xia ◽  
Fuyin Wang ◽  
Chunyan Cao ◽  
Zhengliang Hu ◽  
Heng Yang ◽  
...  

Optomechanical nanocavities open a new hybrid platform such that the interaction between an optical cavity and mechanical oscillator can be achieved on a nanophotonic scale. Owing to attractive advantages such as ultrasmall mass, high optical quality, small mode volume and flexible mechanics, a pair of coupled photonic crystal nanobeam (PCN) cavities are utilized in this paper to establish an optomechanical nanosystem, thus enabling strong optomechanical coupling effects. In coupled PCN cavities, one nanobeam with a mass meff~3 pg works as an in-plane movable mechanical oscillator at a fundamental frequency of . The other nanobeam couples light to excite optical fundamental supermodes at and 1554.464 nm with a larger than 4 × 104. Because of the optomechanical backaction arising from an optical force, abundant optomechanical phenomena in the unresolved sideband are observed in the movable nanobeam. Moreover, benefiting from the in-plane movement of the flexible nanobeam, we achieved a maximum displacement of the movable nanobeam as 1468 . These characteristics indicate that this optomechanical nanocavity is capable of ultrasensitive motion measurements.


2005 ◽  
Vol 86 (7) ◽  
pp. 071917 ◽  
Author(s):  
Y. D. Wang ◽  
S. J. Chua ◽  
S. Tripathy ◽  
M. S. Sander ◽  
P. Chen ◽  
...  

2021 ◽  
Vol 4 (12) ◽  
pp. 906-913
Author(s):  
Kailang Liu ◽  
Bao Jin ◽  
Wei Han ◽  
Xiang Chen ◽  
Penglai Gong ◽  
...  

1989 ◽  
Vol 172 ◽  
Author(s):  
Mahmoud R. Shahriari ◽  
Tariq Iqbal ◽  
Paul R. Foy ◽  
Steve J. Saggese ◽  
G. H. Sigel

AbstractSeveral glass systems based on AIF3 have been synthesized and fabricated into preforms by controlled melting and rotational casting. High optical quality preforms have been drawn into fibers using a specially modified drawing facility. The drawing tower is enclosed with a vertical glove box in which the levels of both moisture and oxygen are kept below 1 ppm during the drawing. The AIF3 -based fibers have shown dramatically superior chemical durability relative to the ZrF4 -based glass fibers. Selected optical, mechanical and thermal properties of these fibers will be presented. AIF3 -based glass fibers offer interesting opportunities for short range applications in the 2–4 micron region of the infrared such as sensing, remote spectroscopy and laser power delivery.


2011 ◽  
Vol 99 (25) ◽  
pp. 251910 ◽  
Author(s):  
X. J. Chen ◽  
B. Gayral ◽  
D. Sam-Giao ◽  
C. Bougerol ◽  
C. Durand ◽  
...  

2010 ◽  
Vol 7 (7-8) ◽  
pp. 2079-2081 ◽  
Author(s):  
Dares Kaewket ◽  
Sakuntam Sanorpim ◽  
Sukkaneste Tungasmita ◽  
Ryuji Katayama ◽  
Kentaro Onabe

2018 ◽  
Vol 9 ◽  
pp. 216-223 ◽  
Author(s):  
Arnau Coll ◽  
Sandra Bermejo ◽  
David Hernández ◽  
Luís Castañer

The fabrication of high optical quality inverse opals is challenging, requiring large size, three-dimensional ordered layers of high dielectric constant ratio. In this article, alumina/TiO2–air inverse opals with a 98.2% reflectivity peak at 798 nm having an area of 2 cm2 and a thickness of 17 µm are achieved using a sacrificial self-assembled structure of large thickness, which was produced with minimum fabrication errors by means of an electrospray technique. Using alumina as the first supporting layer enables the deposition of TiO2 at a higher temperature, therefore providing better optical quality.


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