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相关概念视频

Double Resonance Techniques: Overview01:12

Double Resonance Techniques: Overview

286
Double resonance techniques in Nuclear Magnetic Resonance (NMR) spectroscopy involve the simultaneous application of two different frequencies or radiofrequency pulses to manipulate and observe two distinct nuclear spins. One important application of double resonance is spin decoupling, which selectively suppresses coupling with one type of nucleus while observing the NMR signal from another nucleus, simplifying the spectrum and enhancing resolution.
Spin decoupling is usually achieved by...
286
Parallel Resonance01:23

Parallel Resonance

272
The parallel RLC circuit is an arrangement where the resistor (R), inductor (L), and capacitor (C) are all connected to the same nodes and, as a result, share the same voltage across them. The parallel RLC circuit is analyzed in terms of admittance (Y), which reflects the ease with which current can flow. The admittance is given by:
272
Concept of Resonance and its Characteristics01:19

Concept of Resonance and its Characteristics

5.2K
If a driven oscillator needs to resonate at a specific frequency, then very light damping is required. An example of light damping includes playing piano strings and many other musical instruments. Conversely, to achieve small-amplitude oscillations as in a car's suspension system, heavy damping is required. Heavy damping reduces the amplitude, but the tradeoff is that the system responds at more frequencies. Speed bumps and gravel roads prove that even a car's suspension system is not...
5.2K
¹H NMR: Long-Range Coupling01:27

¹H NMR: Long-Range Coupling

1.9K
The coupling interactions of nuclei across four or more bonds are usually weak, with J values less than 1 Hz. While these are usually not observed in spectra, the presence of multiple bonds along the coupling pathway can result in observable long-range coupling.
In alkenes, spin information is communicated via σ–π overlap, as seen in allylic (four-bond) and homoallylic (five-bond) couplings. These coupling interactions are stronger when the σ bond is parallel to the alkene...
1.9K
Oscillations In An LC Circuit01:30

Oscillations In An LC Circuit

2.5K
An idealized LC circuit of zero resistance can oscillate without any source of emf by shifting the energy stored in the circuit between the electric and magnetic fields. In such an LC circuit, if the capacitor contains a charge q before the switch is closed, then all the energy of the circuit is initially stored in the electric field of the capacitor. This energy is given by
2.5K
Resonance in an AC Circuit01:26

Resonance in an AC Circuit

2.1K
The property of an inductor makes it resist any change in the current passing through it, while the property of a capacitor is to build up the charge across its terminals. Hence, if an inductor and capacitor are connected in series, they have opposite effects on the relative phase between current and voltage. The current through the circuit undergoes forced oscillation at the frequency of the source. The resistance term in an R-L-C circuit acts as a damping term because power is dissipated...
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相关实验视频

Updated: Sep 9, 2025

Generation and Coherent Control of Pulsed Quantum Frequency Combs
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Generation and Coherent Control of Pulsed Quantum Frequency Combs

Published on: June 8, 2018

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基于非局部合的连贯共振控制

Aleksey Ryabov1, Elena Rybalova1, Andrei Bukh1

  • 1Institute of Physics, Saratov State University, Astrakhanskaya str. 83, 410012 Saratov, Russia.

Chaos (Woodbury, N.Y.)
|September 5, 2025
PubMed
概括

非局部合控制了连贯共振中的集体随机动态. 调整合半径可以增强或抑制这种效果,为噪声驱动系统提供新的见解.

科学领域:

  • * 物理
  • * 非线性动力学
  • * 计算神经科学

背景情况:

  • 一致共振 (CR) 是一种在非线性系统中噪声增强信号规律的现象.
  • * 控制集体随机动态对于理解复杂系统至关重要.
  • 提供独特的互动模式.

研究的目的:

  • 证明非局部合是一种控制连贯共振的方法.
  • * 调查合半径对随机动态的影响.
  • * 通过非局部相互作用来呈现连贯共振的数值控制方案.

主要方法:

  • 使用合的菲茨休-纳古莫振荡器进行数值模拟.
  • * 对相关时间和间隙偏差的分析.
  • * 改变噪声强度和合半径以观察效应.

主要成果:

  • * 非局部合有效地控制了CR制度中的集体随机动态.
  • * 增加合半径可以增强或抑制连贯共振.
  • * 观察到的效应在相关时间和间隔间隔的噪声强度依赖中很明显.

结论:

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  • * 非局部合提供了一个可调节的机制来管理连贯共振.
  • * 合半径是控制噪声诱导同步的一个关键参数.
  • 这项研究提供了一个设计和分析具有非局部相互作用的复杂系统的框架.