Silicon-based terahertz signal generation with multi-phase sub-harmonic injection locking technique

This thesis presents a multi-phase injection locking (IL) technique and its application in the locking range extension in multi-phase injection locking oscillators (ILOs) for Terahertz (THz) signal generation. The proposed technique can significantly increase the frequency locking range of a multi-p...

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Bibliographic Details
Main Author: Chi, Taiyun
Other Authors: Wang, Hua
Format: Others
Language:en_US
Published: Georgia Institute of Technology 2016
Subjects:
Online Access:http://hdl.handle.net/1853/55058
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spelling ndltd-GATECH-oai-smartech.gatech.edu-1853-550582016-06-28T03:34:23ZSilicon-based terahertz signal generation with multi-phase sub-harmonic injection locking techniqueChi, TaiyunInjection lockingTerahertz signal sourceThis thesis presents a multi-phase injection locking (IL) technique and its application in the locking range extension in multi-phase injection locking oscillators (ILOs) for Terahertz (THz) signal generation. The proposed technique can significantly increase the frequency locking range of a multi-phase injection locking oscillator compared to the conventional single-phase injection locking scheme. Based on the multi-phase IL technique and sub-harmonic ILOs, an “active frequency multiplier chain” architecture and a multi-ring system layout topology are also proposed to achieve scalable THz signal generation. As proof of concept, a cascaded 3-stage 3-phase 2nd-order sub-harmonic ILO chain is implemented in the IBM 9HP SiGe BiCMOS process. The design achieves a maximum output power of -16.6dBm at 498GHz, a phase noise of -87dBc/ Hz at 1MHz offset, and a total 5.1% frequency tuning range from 485.1GHz to 510.7GHz, which is the largest frequency tuning range among all the reported silicon-based THz oscillator sources in the 0.5THz band.Georgia Institute of TechnologyWang, HuaBakir, MuhannadPapapolymerou, John2016-05-27T13:25:10Z2016-05-27T13:25:10Z2016-052016-05-10May 20162016-05-27T13:25:10ZThesisapplication/pdfhttp://hdl.handle.net/1853/55058en_US
collection NDLTD
language en_US
format Others
sources NDLTD
topic Injection locking
Terahertz signal source
spellingShingle Injection locking
Terahertz signal source
Chi, Taiyun
Silicon-based terahertz signal generation with multi-phase sub-harmonic injection locking technique
description This thesis presents a multi-phase injection locking (IL) technique and its application in the locking range extension in multi-phase injection locking oscillators (ILOs) for Terahertz (THz) signal generation. The proposed technique can significantly increase the frequency locking range of a multi-phase injection locking oscillator compared to the conventional single-phase injection locking scheme. Based on the multi-phase IL technique and sub-harmonic ILOs, an “active frequency multiplier chain” architecture and a multi-ring system layout topology are also proposed to achieve scalable THz signal generation. As proof of concept, a cascaded 3-stage 3-phase 2nd-order sub-harmonic ILO chain is implemented in the IBM 9HP SiGe BiCMOS process. The design achieves a maximum output power of -16.6dBm at 498GHz, a phase noise of -87dBc/ Hz at 1MHz offset, and a total 5.1% frequency tuning range from 485.1GHz to 510.7GHz, which is the largest frequency tuning range among all the reported silicon-based THz oscillator sources in the 0.5THz band.
author2 Wang, Hua
author_facet Wang, Hua
Chi, Taiyun
author Chi, Taiyun
author_sort Chi, Taiyun
title Silicon-based terahertz signal generation with multi-phase sub-harmonic injection locking technique
title_short Silicon-based terahertz signal generation with multi-phase sub-harmonic injection locking technique
title_full Silicon-based terahertz signal generation with multi-phase sub-harmonic injection locking technique
title_fullStr Silicon-based terahertz signal generation with multi-phase sub-harmonic injection locking technique
title_full_unstemmed Silicon-based terahertz signal generation with multi-phase sub-harmonic injection locking technique
title_sort silicon-based terahertz signal generation with multi-phase sub-harmonic injection locking technique
publisher Georgia Institute of Technology
publishDate 2016
url http://hdl.handle.net/1853/55058
work_keys_str_mv AT chitaiyun siliconbasedterahertzsignalgenerationwithmultiphasesubharmonicinjectionlockingtechnique
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