DocumentCode
2182475
Title
Performance of a 40 GHz RF photonic balanced link using a polarization modulator
Author
Boss, M.R. ; Evans, D.C. ; Jacobs, E.W.
Author_Institution
SPAWAR Syst. Center Pacific, San Diego, CA, USA
fYear
2013
fDate
1-3 Oct. 2013
Firstpage
11
Lastpage
12
Abstract
Fiber optic links are commonly employed for high bandwidth applications. Analog RF photonic link applications often have critical sensitivity and linearity requirements, as such the noise figure (NF) and spurious free dynamic range (SFDR) are key performance parameters for these links. There has been considerable research dedicated to developing improved components and link designs to yield improvement in NF and SFDR. A single output intensity modulator based on an AlGaAs polarization modulation (PolM) design with half wave voltage Vπ≅3 V at 1 GHz, 3 dB roll off at 40 GHz, and optical insertion loss ≅3 dB has been reported and is commercially available. [1,2] If the linear polarizer at the output of this device is replaced with a polarizing beam splitter (PBS), dual complementary outputs similar to a dual output Mach Zehnder modulator (MZM) are provided. This allows for an intensity modulated direct detection balanced link (IMDD-BL) design to be implemented which provides multi-octave operation and common mode suppression (CMS) of laser relative intensity noise (RIN) to improve the link NF.[3] Such a IMDD-BL using a PolM, a single fiber from transmitter to receiver, and the PBS preceded by a polarization controller located at the receiver has been demonstrated at 2 GHz showing common mode suppression of RIN similar to a link using a standard lithium niobate (LN) MZM.[4]
Keywords
III-V semiconductors; aluminium compounds; gallium arsenide; intensity modulation; laser modes; laser noise; optical beam splitters; optical design techniques; optical fibre communication; optical fibre losses; optical fibre polarisation; optical links; optical modulation; optical polarisers; optical receivers; optical transmitters; radio links; radio receivers; radio transmitters; AlGaAs; IMDD-BL; NF; PolM; RF photonic balanced link; SFDR; common mode suppression; dual complementary outputs; fiber optic links; frequency 1 GHz; frequency 2 GHz; frequency 40 GHz; half wave voltage; intensity modulated direct detection balanced link design; laser relative intensity noise; linear polarizer; loss 3 dB; multioctave operation; noise figure; optical insertion loss; polarization controller; polarization modulation design; polarization modulator; polarizing beam splitter; receiver; single fiber; single output intensity modulator; spurious free dynamic range; transmitter; Gain; Gain measurement; Modulation; Noise measurement; Photonics; Radio frequency; Temperature measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Avionics, Fiber-Optics and Photonics Conference (AVFOP), 2013 IEEE
Conference_Location
San Diego, CA
Print_ISBN
978-1-4244-7346-5
Type
conf
DOI
10.1109/AVFOP.2013.6661598
Filename
6661598
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