The research group of Prof. Hong Minghui from National University of Singapore revie
ws the latest progresses on the nonlinear optics related to the light amplitude/intensity. The saturable absorption and optical limiting are two nonlinear phenomena to describe the transmission change of a material system. The saturable absorption is the process when the light absorption decreases with light intensity. In other words, a material with the saturable absorption tends to be more “transparent” under stronger incident light irradiation. Materials with the saturable absorption are widely used to fabricate high power lasers. On the other hand, the optical limiting describes the opposite effect. An optical limiting material reduces the transmission of light when the light intensity increases. Hence, the optical limiting is also denoted as the reverse saturable absorption. It is also a critical effect with applications ranging from protective materials, military weapons, optical switching, to high power laser sources. In spite of their importance, both the saturable absorption and optical limiting normally require incident light with high intensity. Hence, they are mostly observed in devices using a pulsed laser with high peak power. This condition can possibly result in permanent optical damage. It is also a critical bottleneck to limit practical applications for the complicated design and high-power lasers cost. The investigation of suitable materials with superior nonlinear properties is a primary research direction in this field. The progress shall not only greatly promote the performance of current optical nonlinear systems, but also bring about new opportunities to design functional devices to address the increasing needs for quantum optics, advanced sensors, artificial intelligence, next-generation optical computers, and many other frontier topics.
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