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Surface plasmon polariton nanolasers:Coherent light sources for new applications

机译:表面等离子体激元纳米激光:相干光源用于新应用

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摘要

The invention of the Internet and mobile devices has caused tremendous changes in human lives over the past two decades.Information technology has broken through limitations of geospatial space,enabling extremely high-speed data transmission and new types of data services.In recent years,demands for data processing have shown an increasing trend.Furthermore,data generated from internet-related applications such as cloud services and self-driving technology are likely to grow exponentially over the coming years.Currently,data transmission inside integrated circuits mainly relies on metal wires.However,the substantial resistive-capacitive delay and energy loss that are caused by metal wires limit data transmission speeds.Optical interconnection has been regarded as a major solution to efficiently reduce energy consumption and increase data transmission speeds.The size of conventional semiconductor laser devices,which are the key component in optical interconnection,cannot be smaller than the wavelength of light,which is a fundamental physical obstacle to lasers integrating with current electronic integrated circuits in reasonable volumes.To realize optical interconnection,the volume of the laser device must match the existing electronic components.Recently,the use of diffraction-unlimited plasmonic lasers has been successfully demonstrated,and these have great potential in different applications.In this paper,we discuss the recent progress toward surface plasmon polariton lasers and provide practical insights into the challenges in realizing these novel devices.
机译:在过去的二十年中,互联网和移动设备的发明给人类的生活带来了巨大的变化。信息技术突破了地理空间的局限,实现了超高速的数据传输和新型的数据服务。此外,从互联网相关应用程序(如云服务和自动驾驶技术)生成的数据在未来几年内可能呈指数级增长。当前,集成电路内部的数据传输主要依靠金属线。然而,由金属线引起的大量的电阻电容延迟和能量损耗限制了数据传输速度。光互连被视为有效降低能量消耗并提高数据传输速度的主要解决方案。它们是光互连的关键组成部分,不能小于光的波长,这是激光器以合理的体积与当前电子集成电路集成的基本物理障碍。要实现光学互连,激光设备的体积必须与现有的电子组件相匹配。最近,使用无衍射衍射的等离激元激光已经被成功地证明,并且在不同的应用中具有巨大的潜力。在本文中,我们讨论了表面等离子体激元激光的最新进展,并对实现这些新型器件的挑战提供了实用的见解。

著录项

  • 来源
    《中国物理:英文版》 |2018年第11期|136-146|共11页
  • 作者单位

    Physics Department, University of Michigan, 450 Church Street, Ann Arbor, MI 481092-122, USA;

    Department of Photonics, "National" Chiao Tung University,Hsinchu 300, Taiwan, China;

    Department of Mechanical and Mechatronic Engineering, "National" Taiwan Ocean University, Keelung 20224, Taiwan, China;

    Center of Excellence for Ocean Engineering, "National" Taiwan Ocean University, Keelung 20224, Taiwan, China;

    Department of Photonics, "National" Chiao Tung University,Hsinchu 300, Taiwan, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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