On-Demand Zero-Drag Hydrodynamic Cloaks Resolve d'Alembert Paradox in Viscous Potential Flows

Breakthrough in Zero-Drag Hydrodynamic Cloaking Technology Academic Background In modern microfluidics and nanoengineering, invisibility characteristics are crucial for ensuring interference-free interactions between intrusive objects and their surrounding environments. For instance, in microfluidic chips transporting biomolecules or precisely cont...

Stochastically Structured Illumination Microscopy: Scan-less Super Resolution Imaging

Report on Stochastic Structured Illumination Microscopy (S2IM): Scan-less Super-Resolution Imaging Academic Background In the field of super-resolution microscopy, traditional Structured Illumination Microscopy (SIM) techniques rely on precise mechanical control and micron-scale optical alignment to achieve high-resolution imaging. However, these t...

New Evidence for the Moon's Age: Tidal-Driven Remelting Event

New Interpretation of the Moon’s Age: A Tidal Heating-Driven Remelting Event Academic Background The formation of the Moon has been a significant issue in planetary science. Currently, the most widely accepted theory for the Moon’s formation is the “Giant Impact Hypothesis,” which posits that during the late stages of Earth’s formation, a Mars-size...

229ThF4 Thin Films for Solid-State Nuclear Clocks

229ThF4 Thin Films for Solid-State Nuclear Clocks

Research on Solid-State Nuclear Clocks Based on 229ThF4 Thin Films Academic Background Nuclear clocks, based on nuclear transitions, offer extremely high precision and stability. In recent years, nuclear clocks based on the thorium-229 (229Th) nuclear isomer transition have garnered significant attention. The 229Th nuclear isomer transition has an ...

Terahertz Field-Induced Metastable Magnetization Near Criticality in FePS3

Terahertz Field-Induced Metastable Magnetization Near Criticality in FePS3

Terahertz Field-Induced Metastable Magnetization Near Criticality in FePS₃ Academic Background In recent years, controlling the functional properties of quantum materials with light has emerged as a frontier in condensed matter physics, leading to the discovery of various light-induced phases of matter, such as superconductivity, ferroelectricity, ...