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関連する概念動画

Beams01:30

Beams

1.9K
Beams are integral components of structural engineering and construction, designed to support loads applied at various points along their length. These long, straight members can be classified based on geometry, cross-section, support type, and equilibrium condition.
Based on geometry, beams can be straight, tapered, or curved. Straight beams are the most common type and have a constant cross-section throughout their length. Tapered beams, on the other hand, have a varying cross-section along...
1.9K
Parallel Resonance01:23

Parallel Resonance

558
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:
558
Parallel Processing01:20

Parallel Processing

716
The brain processes sensory information rapidly due to parallel processing, which involves sending data across multiple neural pathways at the same time. This method allows the brain to manage various sensory qualities, such as shapes, colors, movements, and locations, all concurrently. For instance, when observing a forest landscape, the brain simultaneously processes the movement of leaves, the shapes of trees, the depth between them, and the various shades of green. This enables a quick and...
716
Leaky Scanning02:28

Leaky Scanning

5.7K
During most eukaryotic translation processes, the small 40S ribosome subunit scans an mRNA from its 5' end until it encounters the first start AUG codon. The large 60S ribosomal subunit then joins the smaller one to initiate protein synthesis. The location of the translation initiation is largely determined by the nucleotides near the start codon as there may be multiple translation initiation sites present on the mRNA.  Marilyn Kozak discovered that the sequence RCCAUGG (where R...
5.7K
Resistors In Parallel01:23

Resistors In Parallel

6.2K
Resistors are in parallel when one end of all the resistors are connected to a continuous wire of negligible resistance and the other end of all the resistors are also connected to one another through a continuous wire of negligible resistance. In the case of a parallel configuration, the potential drop across each resistor is the same. Current through each resistor can be found using Ohm’s law, I = V/R, where the voltage is constant across each resistor. The sum of the individual currents...
6.2K
Deflection of a Beam01:19

Deflection of a Beam

727
Accurately determining beam deflection and slope under various loading conditions in structural engineering is crucial for ensuring safety and structural integrity. Singularity functions offer a streamlined approach to analyzing beams, especially when multiple loading functions complicate the bending moment equation.
Singularity functions, described in an earlier lesson, are powerful mathematical tools that represent discontinuities within a function commonly encountered in structural loading...
727

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関連する実験動画

Updated: Feb 1, 2026

Multiplex Chemical Imaging Based on Broadband Stimulated Raman Scattering Microscopy
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Multiplex Chemical Imaging Based on Broadband Stimulated Raman Scattering Microscopy

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準並列走査による広帯域3次元マルチビームスプリッター

Yan-Zhao Duan, Jun-Jie Hua, Yan-Hao Yu

    Optics letters
    |January 30, 2026
    PubMed
    まとめ

    フェムト秒レーザー技術を用いた新しい3D多方向ビームスプリッターを開発しました。この先進的なフォトニックデバイスは、光学コンピューティングおよび通信システムを強化するために、高い均一性と広帯域幅を提供します。

    科学分野:

    • フォトニクス
    • 光学工学
    • 材料科学

    背景:

    • オンチップフォトニックシステムは、高度な情報処理に不可欠です。
    • 従来のビームスプリッターは、偏光依存性や均一性の低さなどの限界に直面しています。
    • 多方向ビームスプリッターは、並列処理能力と処理容量を増大させる鍵となります。

    研究 の 目的:

    • 新規3次元多方向ビームスプリッターの開発。
    • 従来のビームスプリッターの限界の克服。
    • オンチップ光学システムのための性能向上。

    主な方法:

    • フェムト秒レーザーベースの準並列走査技術を用いた作製。
    • ビームスプリッターのための3次元(3D)構造の開発。
    • 均一性や帯域幅を含むスプリッター性能の特性評価。

    主要な成果:

    • ビームスプリッターの均一性を最大92.62%まで達成しました。
    • 750〜1050 nmの広範な動作帯域幅を実証しました。
    • 特性が改善された3次元多方向スプリッターの作製に成功しました。
    キーワード:
    フェムト秒レーザー光ビームスプリッターフォトニック集積回路光学コンピューティング3次元加工

    さらに関連する動画

    High Resolution Phonon-assisted Quasi-resonance Fluorescence Spectroscopy
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    High Resolution Phonon-assisted Quasi-resonance Fluorescence Spectroscopy

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    Tuning a Parallel Segmented Flow Column and Enabling Multiplexed Detection
    08:01

    Tuning a Parallel Segmented Flow Column and Enabling Multiplexed Detection

    Published on: December 15, 2015

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    関連する実験動画

    Last Updated: Feb 1, 2026

    Multiplex Chemical Imaging Based on Broadband Stimulated Raman Scattering Microscopy
    09:57

    Multiplex Chemical Imaging Based on Broadband Stimulated Raman Scattering Microscopy

    Published on: July 25, 2022

    4.6K
    High Resolution Phonon-assisted Quasi-resonance Fluorescence Spectroscopy
    10:40

    High Resolution Phonon-assisted Quasi-resonance Fluorescence Spectroscopy

    Published on: June 28, 2016

    8.0K
    Tuning a Parallel Segmented Flow Column and Enabling Multiplexed Detection
    08:01

    Tuning a Parallel Segmented Flow Column and Enabling Multiplexed Detection

    Published on: December 15, 2015

    7.9K

    結論:

    • フェムト秒レーザー技術は、高性能な3次元フォトニック・スプリッターを作成するための実行可能な方法を提供します。
    • この技術は、光学コンピューティング、センシング、および量子フォトニックシステムに大きな進歩をもたらすことが期待されます。
    • 開発されたスプリッターは、集積密度とデバイス均一性における主要な課題に対処します。