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Journal ArticleDOI

Pulsed terahertz spectroscopy of DNA, bovine serum albumin and collagen between 0.1 and 2.0 THz

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TLDR
The first use of pulsed terahertz spectroscopy to examine low-frequency collective vibrational modes of biomolecules was reported in this paper, which indicated that a large number of the lowfrequency collective modes for these systems are IR active.
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This article is published in Chemical Physics Letters.The article was published on 2000-03-31. It has received 677 citations till now. The article focuses on the topics: Terahertz spectroscopy and technology & Bovine serum albumin.

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Citations
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Materials for terahertz science and technology

TL;DR: Terahertz spectroscopy and imaging provide a powerful tool for the characterization of a broad range of materials, including semiconductors and biomolecules, as well as novel, higher-power terahertz sources.
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Terahertz spectroscopy and imaging – Modern techniques and applications

TL;DR: The terahertz time-domain spectroscopy (THz-TDS) as discussed by the authors is a new spectroscopic technique based on coherent and time-resolved detection of the electric field of ultrashort radiation bursts.
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Terahertz technology in biology and medicine

TL;DR: Terahertz irradiation and sensing is being applied for the first time to a wide range of fields outside the traditional niches of space science, molecular line spectroscopy, and plasma diagnostics as discussed by the authors.
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Imaging with terahertz radiation

TL;DR: A comprehensive review of the various techniques used for terahertz image formation can be found in this paper, as well as numerous examples which illustrate the many exciting potential uses for these emerging technologies.
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Biomedical applications of terahertz technology

TL;DR: In this paper, the development of terahertz (THz) technology and a typical system used in biomedical applications is described, considering applications ranging from THz spectroscopy of crystalline drugs to THz imaging of skin cancer.
References
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Calculation of temperature dependence of interbase breathing motion of a guanine-cytosine DNA double helix with adenine-thymine insert

TL;DR: An iterative method based entirely on the Green's function is developed to compute efficiently the self-consistent anharmonic force constants and thermal mean-squared vibrational amplitudes in hydrogen bonds.
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