相关实验视频
Updated: Aug 4, 2026

10:00
Gradient Echo Quantum Memory in Warm Atomic Vapor
Published on: November 11, 2013
12.9K
光流体内存和自我诱导的非线性光学相变用于光子学中的储计算
Chengkuan Gao1, Prabhav Gaur1, Dhaifallah Almutairi1,2
1Department of Electrical and Computer Engineering, University of California, San Diego, 9500 Gilman Dr., La Jolla, CA, 92093, USA.
Nature communications
|July 21, 2023
概括
研究人员展示了一种用于纳米级神经形态计算的新型光流体系统. 该系统使用光液相互作用和自我诱导的相变来实现高效的计算和内存,显著减少设备大小.
科学领域:
- 光流体学是一种光流体学.
- 纳米光子学 纳米光子学
- 神经形态计算是一种神经形态计算.
背景情况:
- 纳米光子学可以实现用于记忆和计算的非线性光学效应.
- 对于纳米级计算,光液相互作用尚未被探索.
- 现有的基于液体的计算系统很大.
研究的目的:
- 为了展示一个新的光流体系统纳米级神经形态计算.
- 为了利用光液相互作用进行计算.
- 为了实现紧和高效的计算元素.
主要方法:
- 在薄液体薄膜中实验证明自我诱导的相变.
- 将液体薄膜的几何变化合到光子波导模式.
- 在光流体光子系统中利用基于热毛囊的变形来实现非线性光学效应.
主要成果:
- 实现了非线性效应,比传统的热光效应高出一个数量级.
- 作为非线性执行器和内存元件的演示操作.
- 在一个显著较小的空间区域 (比现有系统小五个数量级) 实现了储水库计算.
结论:
- 通过自我诱导相变的光液相互作用是纳米级神经形态计算的可行机制.
- 开发的光流体系统为高级计算提供了一个非常紧和高效的平台.
- 这种方法为小型化,高性能液体计算设备铺平了道路.
相关概念视频
Calculation of Electric Flux
Consider the electric field of an oppositely charged, parallel-plate system and an imaginary box between those plates. Let the bottom face of the box be ABCD, and the top face be FGHK. The electric field between the plates is uniform and points from the positive plate toward the negative plate. The calculation of this field's flux through the box's various faces shows that the net flux through the box is zero. Why does the flux cancel out here?
Calculations of Electric Potential II
An electric dipole is a system of two equal but opposite charges, separated by a fixed distance. This system is used to model many real-world systems, including atomic and molecular interactions. One of these systems is the water molecule, but only under certain circumstances. These circumstances are met inside a microwave oven, where electric fields with alternating directions make the water molecules change orientation. This vibration is equivalent to heat at the molecular level.
Consider a...
Consider a...
Gauss's Law in Dielectrics
Consider a polar dielectric placed in an external field. In such a dielectric, opposite charges on adjacent dipoles neutralize each other, such that the net charge within the dielectric is zero. When a polar dielectric is inserted in between the capacitor plates, an electric field is generated due to the presence of net charges near the edge of the dielectric and the metal plates interface. Since the external electrical field merely aligns the dipoles, the dielectric as a whole is neutral. An...
Energy Associated With a Charge Distribution
The work done to bring a charge through a distance r is given by the potential difference between the initial and the final position. To assemble a collection of point charges, the total work done can be expressed in terms of the product of each pair of charges divided by their separation distance, defined with respect to a suitable origin. Solving this expression gives the energy stored in a point charge distribution.
Stokes' Law
Viscous forces, like friction, are intermolecular forces that resist the relative motion of molecules over each other. When a solid body moves through a liquid, viscous forces drag it in the opposite direction. The force's magnitude depends on the solid's shape and size, as well as its speed and the liquid's coefficient of viscosity, density and temperature.
The expression for the force on a solid spherical object in a fluid is called Stokes' law. Stokes' law is valid only for low Reynolds...
The expression for the force on a solid spherical object in a fluid is called Stokes' law. Stokes' law is valid only for low Reynolds...
Bernoulli's Equation for Flow Along a Streamline
Bernoulli's equation relates the energy conservation in a fluid moving along a streamline. The equation applies to incompressible and inviscid fluids under steady flow. For such a flow, Newton's second law is applied to a small fluid element, which experiences forces due to pressure differences, gravity, and velocity variations. The force balance leads to the following form of Bernoulli's equation:

