Scalable terahertz generation by large-area optical rectification at 80 TW laser power
- Abstract
- We demonstrate high-energy terahertz generation from a large-aperture (75-mm diameter) lithium niobate wafer by using a femtosecond laser with energy up to 2 J. This scheme utilizes optical rectification in a bulk lithium niobate crystal, where most terahertz energy is emitted from a thin layer of the rear surface. Despite its simple setup, this scheme can yield 0.19 mJ of terahertz energy with laser-to-terahertz conversion efficiences of similar to 40(-4), about 3 times better than ZnTe when pumped at 800 nm. The experimental setup is upscalable for multimillijoule terahertz generation with petawatt laser pumping. (C) 2019 Optical Society of America
- Author(s)
- Jang, Dogeun; Kang, Chul; Lee, Seong Ku; Sung, Jae Hee; Kee, Chul-sik; Kang, Seung Woo; Kim, Ki-Yong
- Issued Date
- 2019-11
- Type
- Article
- DOI
- 10.1364/OL.44.005634
- URI
- https://scholar.gist.ac.kr/handle/local/12478
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