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相关概念视频

Galvanometer01:25

Galvanometer

2.3K
Common devices, including car instrument panels, battery chargers, and inexpensive electrical instruments, measure potential difference (voltage), current, or resistance using a d'Arsonval galvanometer. This electromechanical instrument is also known as a moving coil galvanometer.
The galvanometer consists of  two concave-shaped permanent magnets, providing a uniform radial magnetic field in the annular region. In the center, a pivoted coil of fine copper wire is placed in the uniform...
2.3K
Gyroscope: Precession01:24

Gyroscope: Precession

4.6K
Precession can be demonstrated effectively through a spinning top. If a spinning top is placed on a flat surface near the surface of the Earth at a vertical angle and is not spinning, it will fall over due to the force of gravity producing a torque acting on its center of mass. However, if the top is spinning on its axis, it precesses about the vertical direction, rather than topple over due to this torque. Precessional motion is a combination of a steady circular motion of the axis and the...
4.6K
IR Spectrum Peak Splitting: Symmetric vs Asymmetric Vibrations01:08

IR Spectrum Peak Splitting: Symmetric vs Asymmetric Vibrations

1.2K
Identical bonds within a polyatomic group can stretch symmetrically (in-phase) or asymmetrically (out-of-phase). Similar to hydrogen bonding, these vibrations also influence the shape of the IR peak. Generally, asymmetric stretching frequencies are higher than symmetric stretching frequencies. For example, primary amines exhibit two distinct IR peaks between 3300–3500 cm−1 corresponding to the symmetric and asymmetric N-H stretching, while secondary amines exhibit a single...
1.2K
Instrument Calibration01:12

Instrument Calibration

269
Instrument calibration is essential for ensuring that instruments produce accurate and consistent results. It is vital in manufacturing, healthcare, testing laboratories, and scientific research. Calibration processes are specific to each instrument and help enhance data accuracy. Each instrument has a unique calibration process tailored to its design and function to improve data accuracy.
Analytical Balance Calibration
An analytical balance measures mass and requires regular calibration to...
269
Harmonic Mean01:09

Harmonic Mean

3.2K
The arithmetic mean is usually skewed towards the larger values in the data set. Therefore, to avoid this inherent bias towards smaller values, the harmonic mean is used.
Take the example of the speed of a car, which is the measure of the rate of distance traveled. If the vehicle traverses the same distance back-and-forth, its average speed equals the total distance traveled divided by the total time taken. However, if the car moves with varying speeds, then the arithmetic mean is more skewed...
3.2K
Forced Oscillations01:06

Forced Oscillations

6.8K
When an oscillator is forced with a periodic driving force, the motion may seem chaotic. The motions of such oscillators are known as transients. After the transients die out, the oscillator reaches a steady state, where the motion is periodic, and the displacement is determined.
6.8K

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相关实验视频

Updated: Sep 13, 2025

Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators
09:23

Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators

Published on: May 30, 2014

14.6K

量子频率光度计具有通用模式噪声消除.

Pengyuan Chang, Yuxuan Li, Haoran Zhong

    Optics express
    |July 30, 2025
    PubMed
    概括

    一种新的量子频率光度计 (QFG) 将角度测量转换为频率测量,显著提高精确应用的分辨率. 这项技术在角度测量分辨率方面提供了一条超越当前限制的道路.

    科学领域:

    • 计量学 计量学 计量学
    • 量子光学是一种量子光学.
    • 精密工程 精密工程是指精密的工程.

    背景情况:

    • 小角度测量对于航空航天和芯片制造至关重要.
    • 目前的激光干扰仪方法仅限于0.001弧秒的分辨率.
    • 需要更高的角分辨率来实现先进的技术,如光刻.

    研究的目的:

    • 为超高精度角度测量提出量子频率光度计 (QFG).
    • 为了克服现有的角度测量技术的分辨率限制.
    • 在角分辨率方面实现数量级突破.

    主要方法:

    • 开发了一种QFG,采用通用模式的降噪激光频率测量.
    • 集成了一个带有透明介质的干扰过器 (IF).
    • 员工节拍频率测量,以检测由于角度变化的频率变化.
    • 提取频率差异以消除常态噪声.

    主要成果:

    • 理论分析表明,有可能提高角度测量分辨率.
    • 拟议的QFG系统可以达到比10-5弧秒更好的分辨率.
    • 展示了一种将角度测量转换为高精度频率测量的方法.

    更多相关视频

    Measurement of Quantum Interference in a Silicon Ring Resonator Photon Source
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    Measurement of Quantum Interference in a Silicon Ring Resonator Photon Source

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    Implementation of a Reference Interferometer for Nanodetection
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    Implementation of a Reference Interferometer for Nanodetection

    Published on: April 26, 2014

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    相关实验视频

    Last Updated: Sep 13, 2025

    Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators
    09:23

    Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators

    Published on: May 30, 2014

    14.6K
    Measurement of Quantum Interference in a Silicon Ring Resonator Photon Source
    12:19

    Measurement of Quantum Interference in a Silicon Ring Resonator Photon Source

    Published on: April 4, 2017

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    Implementation of a Reference Interferometer for Nanodetection
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    Implementation of a Reference Interferometer for Nanodetection

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    结论:

    • QFG提供了一种有前途的方法,可以显著提升角度测量能力.
    • 这种基于量子的方法可以满足关键行业对更高精度的需求.
    • 频率测量转换为克服当前分辨率障碍提供了一条途径.