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New technique using Raman scattering can dramatically improve laser linewidth for better quantum computing
The Raman technique works by transferring these timing irregularities into vibrations in the diamond crystal, where they get absorbed and dissipated very quickly (in a few trillionths of a second).
Macquarie University researchers have demonstrated a technique to dramatically narrow the linewidth of a laser beam by a factor of over ten thousand – a discovery that could revolutionise quantum ...
Each year on the 28th of February, India celebrates National Science Day, a commemoration of the illustrious physicist C.V. Raman and his revolutionary discovery, the Raman Effect. His research ...
Raman spectroscopy, compatible with molecular and material samples, is one of the most popular quantitative and qualitative spectroscopic techniques. A sample has a distinct Raman “fingerprint” that ...
Laser lights are usually employed for the Raman spectroscopic analysis. The photons emitted by the laser light are absorbed by the sample, temporarily entering a non-stationary, exceedingly brief ...
Scientific American is part of Springer Nature, which owns or has commercial relations with thousands of scientific publications (many of them can be found at www ...
Raman spectroscopy has been highlighted as a vital tool for characterizing 2D materials-based van der Waal heterostructures. In this article, we explore its applications in analyzing graphene, TMDs ...
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