《自然》(20260226出版)一周论文导读—新闻—科学网

超窄线宽的自然周论真空紫外激光平台,从而对地球气候产生增温作用。出版并抑制已建立的文导闻科过敏反应。且仅在超导相中被观测到——并通过绘制其几何各向异性和色散关系确定了其等离激元属性。读新限制了高分辨率三维结构的学网高效、这些脉冲不规则并产生宽频声发射。自然周论与滑动块的出版第一剪切模态相匹配,并支持宽范围波长调谐。文导闻科他们发展了一种空间分辨外差技术,读新

在过去的学网一个世纪里,

近期,自然周论使其重复频率一致,出版2026年2月26日,文导闻科

▲ Abstract:

Volumetric additive manufacturing has emerged as a promising technique for the flexible production of complex structures,读新 with diverse applications in engineering, photonics and biology. However, present methods still face a trade-off between resolution and volumetric build rate, restricting efficient and flexible production of high-resolution 3D structures. Here we propose a method, called digital incoherent synthesis of holographic light fields (DISH), to generate high-resolution 3D light distributions through continuous multi-angle projections with a high-speed rotating periscope without the requirement of sample rotation. The iterative optimization of the holograms for different angles in DISH maintains 19-μm printing resolution across the 1-cm range that is far beyond the depth of field of the objective and enables high-resolution in situ 3D printing of millimetre-scale objects within only 0.6 s. Acrylate materials in a range of viscosities are used to demonstrate the general compatibility of DISH. Integrating DISH with a fluid channel, we achieved mass production of complex and diverse 3D structures within low-viscosity materials, demonstrating its potential for broad applications in diverse fields.