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Ionizing terahertz waves with 260 MV/cm from scalable optical rectification.
Kim, Hyeongmun; Kang, Chul; Jang, Dogeun; Roh, Yulan; Lee, Sang Hwa; Lee, Joong Wook; Sung, Jae Hee; Lee, Seong Ku; Kim, Ki-Yong.
Afiliação
  • Kim H; Advanced Photonics Research Institute, GIST, Gwangju, 61005, Korea.
  • Kang C; Department of Physics and Optoelectronics Convergence Research Center, Chonnam National University, Gwangju, 61186, Korea.
  • Jang D; Advanced Photonics Research Institute, GIST, Gwangju, 61005, Korea. iron74@gist.ac.kr.
  • Roh Y; Pohang Accelerator Laboratory, POSTECH, Pohang, 37673, Korea.
  • Lee SH; Advanced Photonics Research Institute, GIST, Gwangju, 61005, Korea.
  • Lee JW; Center for Relativistic Laser Science, Institute for Basic Science, Gwangju, 61005, Korea.
  • Sung JH; Department of Physics and Optoelectronics Convergence Research Center, Chonnam National University, Gwangju, 61186, Korea.
  • Lee SK; Advanced Photonics Research Institute, GIST, Gwangju, 61005, Korea.
  • Kim KY; Center for Relativistic Laser Science, Institute for Basic Science, Gwangju, 61005, Korea.
Light Sci Appl ; 13(1): 118, 2024 May 27.
Article em En | MEDLINE | ID: mdl-38802347
ABSTRACT
Terahertz (THz) waves, known as non-ionizing radiation owing to their low photon energies, can actually ionize atoms and molecules when a sufficiently large number of THz photons are concentrated in time and space. Here, we demonstrate the generation of ionizing, multicycle, 15-THz waves emitted from large-area lithium niobate crystals via phase-matched optical rectification of 150-terawatt laser pulses. A complete characterization of the generated THz waves in energy, pulse duration, and focal spot size shows that the field strength can reach up to 260 megavolts per centimeter. In particular, a single-shot THz interferometer is employed to measure the THz pulse duration and spectrum with complementary numerical simulations. Such intense THz pulses are irradiated onto various solid targets to demonstrate THz-induced tunneling ionization and plasma formation. This study also discusses the potential of nonperturbative THz-driven ionization in gases, which will open up new opportunities, including nonlinear and relativistic THz physics in plasma.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article