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Published byTeresa Strickland Modified over 9 years ago
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Fourier transform infrared spectroscopy Berezin Danila Moscow 2013
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Plan of a journey Terahertz radiation Its application And research FTIR spectroscopy
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Terahertz radiation is an electromagnetic waves Terahertz gap 10 11 – 10 13 Hz
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THz technology brings better sensing capabilities cancer cavity Visible imageTHz image
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THz technology brings better sensing capabilities Visible imageTHz image ceramic knife
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The goal is to measure how well a sample absorbs light samplelight
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Scanning spectroscopy is the most straightforward way goal – spectrum of absorption
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beam sourcesampledetector absorption It shines a monochromatic light beam…
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beam sourcesampledetector absorption …and measures how much is absorbed
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FT spectroscopy is a less intuitive way to obtain the same information goal – spectrum of absorption
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beam sourcesampledetector absorption beam number A beam contains many frequencies of light at once and absorption of that beam is measured
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beam sourcesampledetector absorption beam number Next, beam is modified to give a second data point
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beam sourcesampledetector absorption beam number Process is repeated many times
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Afterwards, computer processing is required
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There are still undiscovered nuances How to generate and modify that special beam? What computer processing is required?
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moving mirror Wave interference is a key to generate that special beam Michelson interferometer light source beam for the experiment
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Processing required is Fourier transform raw datadesired result
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FT spectroscopy has an advantage – Fellgett’s advantage Scanning spectroscopy Fourier transform spectroscopy
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FTIR spectroscopy – Possible applications – Technology – Advantage
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Thank you
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Back up
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Fourier transform mirror 1 mirror 2 y 1 /2 x/2 Monochromatic source
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Polychromatic source Fourier transform
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