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Single mode optical fiber based devi...
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ProQuest Information and Learning Co.
Single mode optical fiber based devices and systems for mid-infrared light generation, communication and metrology.
紀錄類型:
書目-語言資料,手稿 : Monograph/item
正題名/作者:
Single mode optical fiber based devices and systems for mid-infrared light generation, communication and metrology./
作者:
Kulkarni, Ojas P.
面頁冊數:
1 online resource (102 pages)
附註:
Source: Dissertation Abstracts International, Volume: 72-12, Section: B, page: 7430.
Contained By:
Dissertation Abstracts International72-12B.
標題:
Optics. -
電子資源:
click for full text (PQDT)
ISBN:
9781124911519
Single mode optical fiber based devices and systems for mid-infrared light generation, communication and metrology.
Kulkarni, Ojas P.
Single mode optical fiber based devices and systems for mid-infrared light generation, communication and metrology.
- 1 online resource (102 pages)
Source: Dissertation Abstracts International, Volume: 72-12, Section: B, page: 7430.
Thesis (Ph.D.)--University of Michigan, 2011.
Includes bibliographical references
Fiber-optic systems and devices for broadband mid-infrared light generation, communication and optical metrology are developed in this thesis.
Electronic reproduction.
Ann Arbor, Mich. :
ProQuest,
2018
Mode of access: World Wide Web
ISBN: 9781124911519Subjects--Topical Terms:
595336
Optics.
Index Terms--Genre/Form:
554714
Electronic books.
Single mode optical fiber based devices and systems for mid-infrared light generation, communication and metrology.
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Source: Dissertation Abstracts International, Volume: 72-12, Section: B, page: 7430.
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Adviser: Mohammed N. Islam.
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Thesis (Ph.D.)--University of Michigan, 2011.
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Includes bibliographical references
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Fiber-optic systems and devices for broadband mid-infrared light generation, communication and optical metrology are developed in this thesis.
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Using the nonlinear properties of low mid-infrared loss ZrF4-BaF 2-LaF3-AlF3-NaF (ZBLAN) fiber, a mid-infrared supercontinuum (SC) laser based on a thulium-doped fiber amplifier (TDFA) with spectrum extending from ∼1.9-4.5 microm is demonstrated. A higher efficiency, power-scalable, all-fiber integrated mid-infrared light source is realized capable of generating ∼0.7 W time-average power in wavelengths beyond 3.8 microm.
520
$a
The novelty of the laser lies in its two-step spectral shifting architecture. First, amplified laser diode pulses at 1.55 microm are used to generate a SC extending beyond 2 microm in standard SMF using modulation-instability initiated pulse break-up. A TDFA stage is then used to amplify the ∼2 microm components in the standard SMF continuum. By subsequently coupling the amplified ∼2 microm pulses in to a ZBLAN fiber, an SC with up to ∼2.6 W average power, and ∼9% optical conversion efficiency from the power-amp pump to mid-IR output is demonstrated. The two-step methodology leads to extension in the long wavelength edge of the SC from 4.2 microm to ∼4.5 microm, compared to previously demonstrated systems and ∼2.5 times higher optical efficiency in generating wavelengths beyond 3.8 microm. Numerical simulations are also presented based on solving the generalized non-linear Schrodinger equation to verify and extend experimental results.
520
$a
A broadband surface-normal optical modulator for communication applications with operation demonstrated over 1200--2400 nm is also presented. The modulator uses free-carrier effect in GaAs and mode selectivity of SMF to generate up to ∼43% modulation depth with a maximum operating speed of ∼270 MHz. The broad wavelength range of operation of the modulator can potentially enable higher throughput wavelength-division multiplexed optical network architectures based on broadband light sources.
520
$a
Finally, an optical probe for detection of porosity defects in automotive parts is presented. The probe relies on the spatial coherence properties of SMF output to detect defects as small as ∼50 microm lateral dimensions in bores down to 5 mm diameter. The probe uses a novel two-directional scattering-based non-contact approach to detect and classify defects on surfaces, where human inspection is labor-intensive.
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2018
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