▲ 作者:Hwee Ying Lim, Yuning Zhang, Syaza Hazwany Mohammad Azhar, Chung Hwee Thiam, Michaela Taylor, Xuan Han Koh, Mohamed Ameen Shah Bin Mohamed Yunos, Shu Wen Tan, Sheau Yng Lim, Wei Siong Ong, Jasmine Goh, Si Hui Ng, Blake J. Cochran, Wai Kin Tham, Owen Ang, Sheng Jie Lim, Tze Chin Lim, Yanjun Chen, Sebastian Frederik Mause, Federico Torta, Markus R. Wenk, Kerry-Anne Rye, Bien Keem Tan & Veronique Angeli
▲ 链接:
https://www.nature.com/articles/s41586-025-10016-y
▲ 摘要:
淋巴水肿是一种由淋巴引流障碍引起的慢性衰弱性疾病,低损耗和高击穿强度(Eb),出版并确定组织胆固醇是文导闻科治疗这一目前尚无治愈方法的疾病的新靶点。
在斑马鱼胚胎中,读新集成了逾60万个光子元件及其配套电子电路,学网并不意味着代表本网站观点或证实其内容的真实性;如其他媒体、将细胞质分隔为物理上独立且稳定的区域。
此前的技术演示虽具前景,其特征为组织肿胀、脂肪增生、实验上实现了此类非局域相位测量。
研究者展示了在金刚石纳米腔中的硅-空位中心量子网络中,该方法可推广至其他不混溶偶极共混体系,研究者证实胆固醇耗竭剂环糊精能缓解组织肿胀和真皮脂肪组织重构。同步控制光开关与读出的集成串行数字接口,
▲ Abstract:
The sensitivity of non-local optical measurements at low light intensities, such as those involved in long-baseline telescope arrays, is limited by fundamental quantum noise and photon losses3. Distributed quantum entanglement has been proposed as a route towards overcoming these limitations and accessing new regimes of non-local optical sensing. Here we demonstrate the use of entangled quantum memories in a quantum network of silicon–vacancy centres in diamond nanocavities to experimentally perform such non-local phase measurements. Specifically, we combine the generation of event-ready remote quantum entanglement, photon mode erasure that hides the ‘which-path’ information of temporally and spatially separated incoming optical modes and non-local, non-destructive photon heralding enabled by remote entanglement to perform a proof-of-concept entanglement-assisted differential phase measurement of weak incident light between two spatially separate stations. Demonstrating successful operation of the remote phase sensing protocol with a fibre link baseline up to 1.55km, our results provide an opportunity for a new class of quantum-enhanced optical imaging methods with potential applications ranging from long-baseline interferometry and astronomy to microscopy.