相关实验视频
Updated: Jun 14, 2025

10:09
Operation of the Collaborative Composite Manufacturing CCM System
Published on: October 1, 2019
6.6K
在任意的3D曲线轨迹上对焦点进行多方面的控制
Muhammad Afnan Ansari1, Hammad Ahmed1, Yan Li2
1Institute of Photonics and Quantum Sciences, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh, EH14 4AS, UK.
Light, science & applications
|September 2, 2024
概括
研究人员开发了一种超级金属,能够精确地控制沿着3D曲线路径的焦点. 这种先进的光学超表面技术可以同时定制焦点位置,波长和极化,用于各种应用.
科学领域:
- 光学和光子学 在光学和光子学.
- 材料科学 材料科学 材料科学
背景情况:
- 光学超表面提供了前所未有的光控制能力,使得先进的光学组件,如金属镜头的发展.
- 极化和颜色是重要的光学特性,为科学探索提供了宝贵的见解和工具.
研究的目的:
- 提出并实验证明一种超级金属,在3D曲线轨迹上对焦点有多方面的控制.
- 以可定制的方式设计焦点的波长和极化状态.
主要方法:
- 设计和制造使用光学超表面技术的超金属.
- 实验展示了超级金属人控制三维焦点的能力.
- 焦点属性的表征,包括位置,波长和极化.
主要成果:
- 超级金属人成功地实现了随意3D曲线轨迹沿着焦点的多方面的控制.
- 对焦点的3D定位,极化状态和波长的同时定制,在波长从501nm到700nm之间进行了实验验证.
- 开发的超级金属镜头是为了在3D光学距离测量中的应用而展示的.
结论:
- 拟议的超级金属提供了前所未有的对焦点的控制,整合了多个光学功能.
- 这些超级金属镜头的紧和多功能性质有望缩小用于计量,成像,检测和安全的光学系统.
相关概念视频
Curvilinear Motion: Rectangular Components
429
Curvilinear motion characterizes the movement of a particle or object along a curved path, notably evident when envisioning a car navigating a winding road. If the car starts at point A, its position vector is established within a fixed frame of reference, where the ratio of the position vector to its magnitude signifies the unit vector pointing in the position vector's direction.
As the car advances, its position evolves over time. Quantifying the car's velocity involves computing the...
As the car advances, its position evolves over time. Quantifying the car's velocity involves computing the...
429
Curvilinear Motion: Normal and Tangential Components
388
When a car traverses a curved road, its motion can be elucidated by breaking it down into tangential and normal components. The car-centric coordinates attached to the vehicle move with it.
The positive direction of the t-axis aligns with the increasing position of the car along the curved path, denoted by the unit vector ut. Simultaneously, the n-axis, perpendicular to the t-axis, dissects the curved path into differential arc segments, each forming the arc of a circle with a radius of...
The positive direction of the t-axis aligns with the increasing position of the car along the curved path, denoted by the unit vector ut. Simultaneously, the n-axis, perpendicular to the t-axis, dissects the curved path into differential arc segments, each forming the arc of a circle with a radius of...
388
Curvilinear Motion: Polar Coordinates
350
In polar coordinates, the motion of a particle follows a curvilinear path. The radial coordinate symbolized as 'r,' extends outward from a fixed origin to the particle, while the angular coordinate, 'θ,' measured in radians, represents the counterclockwise angle between a fixed reference line and the radial line connecting the origin to the particle.
The particle's location is described using a unit vector along the radial direction. Deriving the particle's position...
The particle's location is described using a unit vector along the radial direction. Deriving the particle's position...
350
Linear Momentum in Control Volume
1.0K
Newton's second law is applied to obtain the linear momentum in a control volume in a fluid system. According to this law, the rate of change of linear momentum is equal to the sum of external forces acting on the system. When a control volume matches the fluid system at a specific moment, the forces acting on both are identical. Reynolds transport theorem helps explain this by breaking down the system's linear momentum into two components: the rate of change of linear momentum within...
1.0K
Planar Rigid-Body Motion
414
Understanding the movement of a rigid body in planar motion involves recognizing that every particle within this body is traversing a path that maintains a consistent distance from a specific plane. This concept is fundamental in the study of physics and mechanical engineering, and it allows us to comprehend better how objects move in space.
Planar motion is typically divided into three distinct categories. The first is rectilinear translation, demonstrated by a subway train that moves along...
Planar motion is typically divided into three distinct categories. The first is rectilinear translation, demonstrated by a subway train that moves along...
414
Elevation of Intermediate Points on Vertical Curves
25
Vertical curves are essential in roadway design because they provide smooth transitions between varying roadway grades. Designing vertical curves involves calculating intermediate elevations and identifying the curve's highest or lowest point, which is essential for optimal roadway performance.Intermediate elevations on a vertical curve are determined using the tangent offset method. This method considers the initial elevation at the start of the curve, the grades, and the curve's geometry. The...
25

