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◆ Journal of the Optical Society of America B2026-06-22· Physics

Extreme light interaction with matter—IV. Applications and future prospects [Invited]

Gattamraju Ravindra, Amita Das, Prashant Singh, Manchikanti Krishnamurthy

原始摘要(英文原文)· Original abstract
This review presents a perspective on the growth of high peak power, ultrashort laser pulses, and efforts to harness them to generate ultra-large intensities of light that can create extreme states of high temperature and high density in matter. It begins by exploring the evolution of the laser sources over the past few decades and traces their interaction across different forms of matter—from single atoms to solids, highlighting the common as well as unique features of the physical processes involved. The subject is intrinsically linked to cutting-edge technological developments and we present some of these examples: particle acceleration, bright electromagnetic radiation, and material particle sources with their applications in imaging, material manipulation, and medical therapies. Given the nature of this review, the South Asian context is woven into the narrative, presenting our perspectives on the past and plans for the future. This review is divided into four parts. The title of each part indicates its core content, but we have attempted to preserve the thematic coherence and cross discussions among the parts. We urge the reader to read them together to get a complete perspective of the article. In the first three parts of the review, the generation of extreme light and its interaction with various phases of matter and their consequences for fast electron transport, giant magnetic fields, shocks induced, and the generation of bright, energetic particle fluxes are described. In this concluding part, we review the applications that these interactions have enabled and present our perspective on the future of this area.
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