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関連する概念動画

Standing Waves in a Cavity01:28

Standing Waves in a Cavity

1.1K
A household microwave and lasers are examples of standing electromagnetic waves in a cavity. When two conducting metal plates are placed parallel at the nodal planes, it creates a cavity where standing waves are formed. The cavity between the two planes is analogous to a stretched string held at the points x = 0 and x = L. Here, the distance 'L' between the two planes must be an integer multiple of half of the wavelength. The wavelengths that satisfy this condition are given by:
1.1K
Atomic Nuclei: Nuclear Spin State Overview01:03

Atomic Nuclei: Nuclear Spin State Overview

1.2K
NMR-active nuclei have energy levels called 'spin states' that are associated with the orientations of their nuclear magnetic moments. In the absence of a magnetic field, the nuclear magnetic moments are randomly oriented, and the spin states are degenerate. When an external magnetic field is applied, the spin states have only 2 + 1 orientations available to them. A proton with = ½ has two available orientations. Similarly, for a quadrupolar nucleus with a nuclear spin value of...
1.2K
Modes of Standing Waves: II01:04

Modes of Standing Waves: II

1.0K
The starting point for expressing the modes of standing waves is understanding the boundary conditions that the waves must follow. The boundary conditions are derived from the physical understanding of how the standing waves are sustained, that is, how the vibrating particles of the medium behave at the boundaries imposed on them.
For a tube open at one end and closed at the other filled with air, the modes are such that there is always an antinode at the open end and a node at the closed end....
1.0K
Modes of Standing Waves - I01:03

Modes of Standing Waves - I

3.1K
A close look at earthquakes provides evidence for the conditions appropriate for resonance, standing waves, and constructive and destructive interference. A building may vibrate for several seconds with a driving frequency matching the building's natural frequency of vibration; this produces a resonance that results in one building collapsing while the neighboring buildings do not. Often, buildings of a certain height are devastated, while other taller buildings remain intact. This...
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Deactivation Processes: Jablonski Diagram01:25

Deactivation Processes: Jablonski Diagram

980
Luminescence, the emission of light by a substance that has absorbed energy, is a process that involves the interaction of molecules with light. The energy-level diagram, or Jablonski diagram, is a graphical representation of these interactions, illustrating the various states and transitions a molecule can undergo. In a typical Jablonski diagram, the lowest horizontal line represents the ground-state energy of the molecule, which is usually a singlet state. This state represents the energies...
980
MOSFET: Enhancement Mode01:22

MOSFET: Enhancement Mode

511
Enhancement-mode MOSFETs are pivotal components in electronics, distinguished by their capacity to act as highly efficient switches. They are part of the larger family of metal-oxide Semiconductor Field-Effect Transistors (MOSFETs). They are available in two types: p-channel and n-channel, each tailored to specific polarity operations.
In their basic form, enhancement-mode MOSFETs are typically non-conductive when the gate-source voltage (Vgs) is zero. This default 'off' state means no...
511

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Updated: Oct 2, 2025

Automation of Mode Locking in a Nonlinear Polarization Rotation Fiber Laser through Output Polarization Measurements
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Automation of Mode Locking in a Nonlinear Polarization Rotation Fiber Laser through Output Polarization Measurements

Published on: February 28, 2016

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特殊状態移転によるレーザー空洞のトポロジックモード

A Schumer1,2, Y G N Liu1, J Leshin3

  • 1Ming Hsieh Department of Electrical and Computer Engineering, University of Southern California, Los Angeles, CA 90089, USA.

Science (New York, N.Y.)
|February 24, 2022
PubMed
まとめ

研究者達は,非ヘルミシアン例外的な点を囲む空洞を設計することで, レーザー光放射の形を作りました. この方法は,高度な光学装置の潜在能力を有する,空間的に進化するユニークなレーザーモードを作成します.

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Low-cost Custom Fabrication and Mode-locked Operation of an All-normal-dispersion Femtosecond Fiber Laser for Multiphoton Microscopy
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Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators
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Quantum State Engineering of Light with Continuous-wave Optical Parametric Oscillators

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関連する実験動画

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14:18

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Published on: February 28, 2016

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Low-cost Custom Fabrication and Mode-locked Operation of an All-normal-dispersion Femtosecond Fiber Laser for Multiphoton Microscopy
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Low-cost Custom Fabrication and Mode-locked Operation of an All-normal-dispersion Femtosecond Fiber Laser for Multiphoton Microscopy

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

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科学分野:

  • 光学とフォトニクス
  • 量子物理学
  • 材料科学

背景:

  • レーザーモードは通常,空洞内の自己類似の横断空間プロファイルを維持します.
  • 光放出特性を制御することは,様々な科学技術的な応用において極めて重要です.

研究 の 目的:

  • 空間的に進化するレーザーモードを形作る方法を実証する.
  • 穴の側面で二対対の状態に落ち着くレーザーモードを達成します.

主な方法:

  • 非ヘルミシアン例外点を囲むように レーザー空洞構造を設計する.
  • レージングモードの確保は,その進化の間に非アディアバティックジャンプを回避します.

主要な成果:

  • 空間的に進化するレーザーモードを 形作りました
  • 穴の側面で二直角な状態に落ち着くことを実証した.
  • 特殊点近くのリーマン表面のトポロジーにリンクされた状態移転.

結論:

  • 開発されたアプローチは,多用途のモード選択型アクティブデバイスを可能にします.
  • レーザーシステムの例外的な点のトポロジカル特性を強調します.