量子压缩:下一代精密技术的关键 诸平 Fig. 1 Quantum squeezing is a breakthrough concept that refines our ability to measure with high precision by adjusting uncertainty within quantum systems. By “squeezing” one part of a measurement to reduce uncertainty, scientists can capture mor ...
研究人员开发出世界上第一个非电动触摸板 诸平 Fig. 1 The pneumatic touchpad is made of soft silicone. It contains 32 channels, each only a few hundred micrometres wide, that adapt to touch. Pneumatic sensors can collect much data by touch. Credit: Jonne Renvall / Tampere University ...
新方法彻底改变量子信息跨波长传输 诸平 Fig. 1 Researchers at SJTU have developed a novel method for broadband frequency conversion, enhancing data transfer and quantum networks through improved optical processing. Credit: SciTechDaily.com Fig. 2 (a) Schematic of the biref ...
自闭症突破:与情绪和行为障碍相关的小脑异常 诸平 Fig. 1 Recent research highlights the cerebellum’s crucial role in both motor coordination and social-cognitive functions, expanding its known importance beyond just movement control. Innovative brain stimulation techniques, such as magn ...
机器学习与纳米技术的结合:加州理工学院在质谱方面的突破 诸平 In Caltech’s new fingerprint technique, a single molecule adsorbs onto the phononic crystal resonator device. Then scientists measure the frequency shifts of four different vibrational modes of the device, allowing them to cr ...
运动神经元疾病的突破性药物在新的研究中显示出希望 诸平 Key Highlights: Ellorarxine, a novel drug compound developed by Nevrargenics, has demonstrated antioxidant and anti-inflammatory effects, which make it a promising new therapy for treating ALS. The results showed that Ellorarxine in ...
量子纠缠有多快? 诸平 An atom is hit by a laser pulse. One electron is ripped out of the atom, another electron is shifted into a state with higher energy. 据奥地利维也纳理工大学 ( Vienna University of Technology 简称 TU Wien ) 2024 年 10 月 22 日提供的消息,量子纠缠有多 ...
革命性的发现:包裹并消灭细菌的蛋白质 诸平 Illustration of how GBP1 proteins (blue and purple) attach to the membrane of a bacterium (yellow), zoomed in from an image taken with an electron microscope (in grayscale). Credit: TU Delft 据荷兰代尔夫特理工大学( Delft University of T ...
生物技术突破:改造树木以取代化石燃料 诸平 Fig. 1 Researchers have engineered poplar trees with altered lignin content that are more easily degraded by microbes, paving the way for sustainable chemical production and providing a promising solution to reduce reliance on fossil ...
大自然的秘密武器:花肽有望对抗致命的脑癌 诸平 Fig. 1 Researchers in Wyoming have discovered that cyclotides from violets, particularly kalata B1, can boost the potency of TMZ chemotherapy in treating glioblastoma, offering potential for improved treatment options. Synthetic versions of ...