TY - JOUR
T1 - Review of intense terahertz generation and its emerging applications
AU - Song, Liwei
AU - Wu, Xiaojun
AU - Li, Hua
AU - Leng, Yuxin
AU - Tian, Ye
AU - Li, Ruxin
N1 - Publisher Copyright:
© 2026 Author(s).
PY - 2026/6/1
Y1 - 2026/6/1
N2 - Terahertz (THz) radiation, which occupies a crucial region between electronics and photonics, has become a transformative tool in strongfield physics, ultrafast spectroscopy, and materials control. This review offers a comprehensive survey of cutting-edge advances in THz generation via optical frequency downconversion and its emerging applications. We delve into the principles and significant progress underlying various THz sources, including optical rectification in lithium niobate and organic crystals, optical different frequency generation, intense laser-induced electron radiation, spintronic THz emission, and quantum cascade lasers (QCLs). The review also highlights the profound impact of these intense THz sources in material manipulation, such as polarization control, phonon polariton excitation, and nonlinear phononics, and in revolutionizing electron dynamics through compact acceleration. Furthermore, we cover advances in THz QCL frequency combs and their role in high-precision dual-comb spectroscopy. Finally, we discuss remaining challenges and future directions, offering a roadmap for the development of next-generation high-field THz technologies and their applications in fundamental research and critical applications.
AB - Terahertz (THz) radiation, which occupies a crucial region between electronics and photonics, has become a transformative tool in strongfield physics, ultrafast spectroscopy, and materials control. This review offers a comprehensive survey of cutting-edge advances in THz generation via optical frequency downconversion and its emerging applications. We delve into the principles and significant progress underlying various THz sources, including optical rectification in lithium niobate and organic crystals, optical different frequency generation, intense laser-induced electron radiation, spintronic THz emission, and quantum cascade lasers (QCLs). The review also highlights the profound impact of these intense THz sources in material manipulation, such as polarization control, phonon polariton excitation, and nonlinear phononics, and in revolutionizing electron dynamics through compact acceleration. Furthermore, we cover advances in THz QCL frequency combs and their role in high-precision dual-comb spectroscopy. Finally, we discuss remaining challenges and future directions, offering a roadmap for the development of next-generation high-field THz technologies and their applications in fundamental research and critical applications.
UR - https://www.scopus.com/pages/publications/105035675223
U2 - 10.1063/5.0306279
DO - 10.1063/5.0306279
M3 - 文献综述
AN - SCOPUS:105035675223
SN - 1931-9401
VL - 13
JO - Applied Physics Reviews
JF - Applied Physics Reviews
IS - 2
M1 - 021302
ER -