Jung Chulho, Ihm Yungok, Cho Do Hyung, Lee Heemin, Nam Daewoong, Kim Sangsoo, Eom In-Tae, Park Jaehyun, Kim Chan, Kim Yoonhee, Fan Jiadong, Ji Nianjing, Morris James R, Owada Shigeki, Tono Kensuke, Shim Ji Hoon, Jiang Huaidong, Yabashi Makina, Ishikawa Tetsuya, Noh Do Young, Song Changyong
Department of Physics, POSTECH, Pohang 37673, Korea.
Photon Science Center, POSTECH, Pohang 37673, Korea.
Sci Adv. 2021 Dec 24;7(52):eabj8552. doi: 10.1126/sciadv.abj8552. Epub 2021 Dec 22.
Ultrafast light-matter interactions enable inducing exotic material phases by promoting access to kinetic processes blocked in equilibrium. Despite potential opportunities, actively using nonequilibrium kinetics for material discovery is limited by the poor understanding on intermediate states of driven systems. Here, using single-pulse time-resolved imaging with x-ray free-electron lasers, we found intermediate states of photoexcited bismuth nanoparticles that showed kinetically reversed surface ordering during ultrafast melting. This entropy-lowering reaction was further investigated by molecular dynamics simulations to reveal that observed kinetics were thermodynamically buried in equilibrium, which emphasized the critical role of electron-mediated ultrafast free-energy modification in inducing exotic material phases. This study demonstrated that ultrafast photoexcitations of electrons provide an efficient strategy to induce hidden material phases by overcoming thermodynamic barriers via nonequilibrium reaction pathways.
超快光与物质相互作用能够通过促进进入平衡状态下受阻的动力学过程来诱导奇异的物质相。尽管存在潜在机遇,但由于对驱动系统中间态的了解不足,积极利用非平衡动力学进行材料发现受到限制。在这里,我们利用X射线自由电子激光的单脉冲时间分辨成像,发现了光激发铋纳米颗粒的中间态,这些中间态在超快熔化过程中表现出动力学上反向的表面有序化。通过分子动力学模拟进一步研究了这种熵降低反应,以揭示观察到的动力学在平衡状态下被热力学掩盖,这强调了电子介导的超快自由能修饰在诱导奇异物质相中的关键作用。这项研究表明,电子的超快光激发提供了一种有效的策略,通过非平衡反应途径克服热力学障碍来诱导隐藏的物质相。