Highly Sensitive Microsensor Based on Absorption Spectroscopy: Design Considerations for Optical Receiver
The development of a biomedical sensor involves an extremely sensitive optoelectronics system whose foundations lie on intracavity absoprtion spectroscopy. In order to make it convenient for technical reasons to use this application based utility, we implement dual mode competition. All of the compo...
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doaj-b4f25b07ba1847f19f19858f7a4665642021-03-30T02:33:43ZengIEEEIEEE Access2169-35362020-01-01810021210022510.1109/ACCESS.2020.29969739099307Highly Sensitive Microsensor Based on Absorption Spectroscopy: Design Considerations for Optical ReceiverUsman Masud0https://orcid.org/0000-0003-1067-4415Fathe Jeribi1https://orcid.org/0000-0002-8511-8002Ahmad Zeeshan2Ali Tahir3https://orcid.org/0000-0001-5685-3107Mudassar Ali4https://orcid.org/0000-0002-8402-5920Faculty of Electrical and Electronics Engineering, University of Engineering and Technology, Taxila, Taxila, PakistanCollege of Computer Science and Information Technology, Jazan University, Jazan, Saudi ArabiaDepartment of Mathematics and Statistics, FBAS, International Islamic University, Islamabad, Islamabad, PakistanCollege of Computer Science and Information Technology, Jazan University, Jazan, Saudi ArabiaSchool of Electrical Engineering and Computer Science, National University of Science and Technology, Islamabad, PakistanThe development of a biomedical sensor involves an extremely sensitive optoelectronics system whose foundations lie on intracavity absoprtion spectroscopy. In order to make it convenient for technical reasons to use this application based utility, we implement dual mode competition. All of the components in this system must be investigated in detail. This work concerns with the design of the optical receiver which is mandatory to understand and analyze the received signal. This has been effectively done by designing an inexpensive system which replaces the existing Agilent based setup. Next, the performance of the system has been investigated by using an important parameter Relative Intensity Noise (RIN). The variation of injection current and temperature and their subsequent effect on RIN has been comprehensively examined. This has been enhanced by an investigation of RIN as subject to the mode positions (values of wavelengths) at which the framework is being operated. Through these considerations, the system's behaviour is understood in a much better way as they lead to an improvement in the sensor's realization with high sensitivity and stability.https://ieeexplore.ieee.org/document/9099307/Semiconductor laser diodeoptical receiverrelative intensity noisecavity optomechanicsbiomedical sensor |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Usman Masud Fathe Jeribi Ahmad Zeeshan Ali Tahir Mudassar Ali |
spellingShingle |
Usman Masud Fathe Jeribi Ahmad Zeeshan Ali Tahir Mudassar Ali Highly Sensitive Microsensor Based on Absorption Spectroscopy: Design Considerations for Optical Receiver IEEE Access Semiconductor laser diode optical receiver relative intensity noise cavity optomechanics biomedical sensor |
author_facet |
Usman Masud Fathe Jeribi Ahmad Zeeshan Ali Tahir Mudassar Ali |
author_sort |
Usman Masud |
title |
Highly Sensitive Microsensor Based on Absorption Spectroscopy: Design Considerations for Optical Receiver |
title_short |
Highly Sensitive Microsensor Based on Absorption Spectroscopy: Design Considerations for Optical Receiver |
title_full |
Highly Sensitive Microsensor Based on Absorption Spectroscopy: Design Considerations for Optical Receiver |
title_fullStr |
Highly Sensitive Microsensor Based on Absorption Spectroscopy: Design Considerations for Optical Receiver |
title_full_unstemmed |
Highly Sensitive Microsensor Based on Absorption Spectroscopy: Design Considerations for Optical Receiver |
title_sort |
highly sensitive microsensor based on absorption spectroscopy: design considerations for optical receiver |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2020-01-01 |
description |
The development of a biomedical sensor involves an extremely sensitive optoelectronics system whose foundations lie on intracavity absoprtion spectroscopy. In order to make it convenient for technical reasons to use this application based utility, we implement dual mode competition. All of the components in this system must be investigated in detail. This work concerns with the design of the optical receiver which is mandatory to understand and analyze the received signal. This has been effectively done by designing an inexpensive system which replaces the existing Agilent based setup. Next, the performance of the system has been investigated by using an important parameter Relative Intensity Noise (RIN). The variation of injection current and temperature and their subsequent effect on RIN has been comprehensively examined. This has been enhanced by an investigation of RIN as subject to the mode positions (values of wavelengths) at which the framework is being operated. Through these considerations, the system's behaviour is understood in a much better way as they lead to an improvement in the sensor's realization with high sensitivity and stability. |
topic |
Semiconductor laser diode optical receiver relative intensity noise cavity optomechanics biomedical sensor |
url |
https://ieeexplore.ieee.org/document/9099307/ |
work_keys_str_mv |
AT usmanmasud highlysensitivemicrosensorbasedonabsorptionspectroscopydesignconsiderationsforopticalreceiver AT fathejeribi highlysensitivemicrosensorbasedonabsorptionspectroscopydesignconsiderationsforopticalreceiver AT ahmadzeeshan highlysensitivemicrosensorbasedonabsorptionspectroscopydesignconsiderationsforopticalreceiver AT alitahir highlysensitivemicrosensorbasedonabsorptionspectroscopydesignconsiderationsforopticalreceiver AT mudassarali highlysensitivemicrosensorbasedonabsorptionspectroscopydesignconsiderationsforopticalreceiver |
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1724184996764188672 |