Chinese Optics Letters, 2019, 17 (5): 052302, Published Online: May. 6, 2019  

Analysis and testing of total ionizing dose effect on several commercial optical transceivers via gamma-ray radiation Download: 985次

Author Affiliations
1 Key Laboratory of Space Utilization, Technology and Engineering Center for Space Utilization, Chinese Academy of Sciences, Beijing 100094, China
2 AVIC Hisense Photoelectric Technology Co., Ltd., Qingdao 266100, China
3 Beijing University of Posts and Telecommunications, IPOC, Beijing 100876, China
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Yueying Zhan, Jianhua He, Fei Wang, Liqian Wang. Analysis and testing of total ionizing dose effect on several commercial optical transceivers via gamma-ray radiation[J]. Chinese Optics Letters, 2019, 17(5): 052302.

References

[1] KaushalH.KaddoumG., IEEE Commun. Surv. Tutorials19, 57 (2017).

[2] SeinE.PlancheG.LaurentB.BouzinacJ. P.OppenhauserG.Tolker-NielsenT., Annales Des Télécommun.58, 1849 (2003).

[3] MarshallP. W.DaleC. J.LaBelK. A., IEEE Trans. Nucl. Sci.43, 645 (1996).IETNAE0018-9499

[4] KuzniaC. B.AhadianJ. F.PommerR. J.HaganR., in Proceedings of IEEE Radiation Effects Data Workshop (2007), p. 92.

[5] ArruegoI.MartínezJ.GuerreroH., IEEE Trans. Nucl. Sci.58, 3067 (2011).IETNAE0018-9499

[6] BerghamansF.Van UffelenM.FernandezA. F.BrichardB.DecretonM.NowodzinskiA.GusarovA., in Optical Fiber Communication Conference and Exhibit OFC (2001), p. 1.

[7] KawaseD.OomoriH.ShiozakiM.KurashimaH., in SEI Technical Review Information & Communication (2011), p. 73.

[8] HeikkinenV.AlajokiT.JuntunenE.KarppinenM.KautioK.MakinenJ.-T.OllilaJ.ToivonenJ.CaseyR.ScottS.PintzkaW.TheriaultS.McKenzieI., J. Lightwave Technol.25, 1213 (2007).JLTEDG0733-8724

[9] ZeinolabedinzadehS.UlusoyA. C.InanlouF.YingH.GongY.FleetwoodZ. E.RocheN. J. H.KhachatrianA.McMorrowD.BuchnerS. P.WarnerJ. H., IEEE Trans. Nucl. Sci.64, 536 (2017).IETNAE0018-9499

[10] JingJ.LiuJ.HouY., Chin. Opt. Lett.14, 030601 (2016).CJOEE31671-7694

[11] ZhanY.CaoS.WangY.HeJ., Optik138, 550 (2017).OTIKAJ0030-4026

[12] ZhanY.CaoS.WangY.HeJ., in IEEE Avionics and Vehicle Fiber-Optics and Photonics Conference (AVFOP) (2017), p. 63.

[13] JohnstonA. H., IEEE Trans. Nucl. Sci.50, 689 (2003).IETNAE0018-9499

[14] StejskalP., “Radiation Effects in Optical Link Components for Future Particle Physics Detectors,” PhD. Thesis (Imperial College London, 2013).

[15] CochranD. J.KniffinS. D.LaBelK. A.O’BryanM. V.ReedR. A.LadburyR. L.HowardJ. W.PoiveyC.BuchnerS. P.MarshallC. J.MarshallP. W.KimH. S.HawkinsD. K.CartsM. A.ForneyJ. D.SandersA. B.BingsJ.SeilerJ.HallN. E.IrwinT.KahricZ.CoxS. R.PalorC., in IEEE Radiation Effects Data Workshop (2003), p. 57.

[16] BachaM.BelghorafA., Chin. Opt. Lett.15, 021301 (2017).CJOEE31671-7694

[17] DingL.GerardinS.BagatinM.BiselloD.MattiazzoS.PaccagnellaA., Nucl. Instrum. Methods Phys. Res. A796, 104 (2015).

[18] SajidM.ChecheninN. G.TorresF. S.HanifM. N.GulzariU. A.ArslanS.KhanE. U., Nucl. Instrum. Methods Phys. Res. B428, 30 (2018).

[19] BarnabyH. J., IEEE Trans. Nucl. Sci.53, 3103 (2006).IETNAE0018-9499

[20] BarnesC. E., Phys. Rev. B1, 4735 (1970).

[21] SogoyanA. V.ArtamonovA. S.NikiforovA. Y.BoychenkoD. V., Electron. Energet.27, 329 (2014).

[22] IAEA Safety Series No. 107, “Radiation Safety of Gamma, Electron and X Ray Irradiation Facilities,” IAEA Safety Standards for Protecting People and the Environment (1992).

[23] HuaW.ZhouG.WangY.ZhouP.YangS.PengC.BianF.LiX.WangJ., Chin. Opt. Lett.15, 033401 (2017).CJOEE31671-7694

[24] YangY.YangF., Chin. Opt. Lett.14, 110605 (2016).CJOEE31671-7694

[25] SigalasM. M.SoukoulisC. M.BiswasR.HoK. M., Phys. Rev. B56, 959 (1997).

[26] HodgsonJ. A.KrichbaumT. P.MarscherA. P.JorstadS. G.RaniB.Marti-VidalI.BachU.SanchezS.BremerM.LindqvistM.UunilaM., Astron. Astrophys.597, A80 (2017).AAEJAF0004-6361

[27] TorresL.ZazoM.IniguezJ.De FranciscoC.MunozJ. M.HernandezP., Appl. Phys. Lett.68, 564 (1996).APPLAB0003-6951

[28] HisatakeK.MatsubaraI.MaedaK.WakaoH.FujiharaT.KawaiY.UematsuK., J. Magn. Magn. Mater.112, 387 (1992).JMMMDC0304-8853

Yueying Zhan, Jianhua He, Fei Wang, Liqian Wang. Analysis and testing of total ionizing dose effect on several commercial optical transceivers via gamma-ray radiation[J]. Chinese Optics Letters, 2019, 17(5): 052302.

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