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Matrix-assisted laser desorption ionization (MALDI) is a powerful analytical technique used in mass spectrometry. It enables the identification and characterization of various biomolecules, including proteins, peptides, nucleic acids, and carbohydrates. MALDI is an ionization technique, widely employed in biological and medical research, as well as in fields like pharmacology and biochemistry.The analyte of interest, a biomolecule or a mixture of biomolecules, is mixed with a suitable matrix...
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Pure substances consist of only one type of matter. A pure substance can be an element or a compound. An element consists of only one type of atom, while a compound consists of two or more types of atoms held together by a chemical bond. Elements are classified as atomic or molecular based on the nature of their basic units.
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The nucleolus is the most prominent substructure of the nucleus. When it was first discovered, it was considered to be an isolated organelle that forms fibrils and granules. In 1931, the relationship between the nucleolus and chromosomes was first described by Heitz. He observed that the appearance and size of nucleolus varies depending on the stage of the cell cycle. He also noticed constricted regions on different chromosomes clustered together at definite cell cycle stages. These regions,...
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Lattice Energy 
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  2. 超对称激光阵列
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  2. 超对称激光阵列

相关实验视频

Laser-Induced Action Potential-Like Measurements of Cardiomyocytes on Microelectrode Arrays for Increased Predictivity of Safety Pharmacology
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超对称激光阵列

Mohammad P Hokmabadi1, Nicholas S Nye1, Ramy El-Ganainy2

  • 1CREOL, College of Optics and Photonics, University of Central Florida, Orlando, FL 32816, USA.

Science (New York, N.Y.)
|February 9, 2019

在PubMed 上查看摘要

概括
此摘要是机器生成的。

研究人员将超对称性从高能物理应用到光子学, 创造了一个稳定的超对称激光阵列. 这一突破使集成激光器的辐射可扩大,并提供了对非隐形性和超对称性的洞察力.

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Array Comparative Genomic Hybridization Array CGH for Detection of Genomic Copy Number Variants

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Laser-induced Forward Transfer of Ag Nanopaste
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科学领域:

  • 光子学
  • 高能物理
  • 光学学

背景情况:

  • 增加合激光阵列的辐射是一个持续的挑战.
  • 现有的方法在实现高辐射和稳定的基本模式辐射方面存在局限性.

研究的目的:

  • 探索超对称在光子学中的应用,以提高激光阵列的性能.
  • 为了展示一种新的方法, 稳定, 高辐射辐射从合激光阵列.

主要方法:

  • 使用超对称的概念, 高能物理学的理论框架
  • 设计并实现了超对称激光阵列架构.

主要成果:

  • 成功展示了一个稳定的超对称激光阵列.
  • 该阵列仅在基本横向模式下发射.
  • 实现了稳定的运行,克服了以前的扩展限制.

结论:

  • 超对称性为推进综合激光技术提供了强大的工具.
  • 开发的超对称激光阵列为扩展辐射提供了新的途径.
  • 这项工作突显了光学系统中的非密集性和超对称性之间的潜在协同作用.