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Efficient Low-Voltage Phase Shifter with Inkjet-Printed Liquid Crystal on a Silicon on Insulator Platform

 
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cris.virtual.orcid0000-0002-5778-4745
cris.virtual.orcid0000-0001-5760-7485
cris.virtual.orcid0000-0003-1112-8950
cris.virtual.orcid0000-0002-8245-9442
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cris.virtualsource.orcid3e417957-bd69-4f6e-8be1-eb1dc45fc11d
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cris.virtualsource.orcidf421472b-3c78-4486-a88e-266fc55314cb
dc.contributor.authorVan Iseghem, Lukas
dc.contributor.authorKhan, Muhammad Umar
dc.contributor.authorPicavet, Ewout
dc.contributor.authorTakabayashi, Alain Yuji
dc.contributor.authorEdinger, Pierre
dc.contributor.authorVerheyen, Peter
dc.contributor.authorQuack, Niels
dc.contributor.authorGylfason, Kristinn B.
dc.contributor.authorDe Buysser, Klaartje
dc.contributor.authorBeeckman, Jeroen
dc.contributor.authorBogaerts, Wim
dc.contributor.imecauthorVan Iseghem, Lukas
dc.contributor.imecauthorKhan, Umar
dc.contributor.imecauthorVerheyen, Peter
dc.contributor.imecauthorBogaerts, Wim
dc.contributor.orcidimecVan Iseghem, Lukas::0000-0002-5778-4745
dc.contributor.orcidimecVerheyen, Peter::0000-0002-8245-9442
dc.contributor.orcidimecBogaerts, Wim::0000-0003-1112-8950
dc.date.accessioned2025-05-16T05:41:55Z
dc.date.available2025-05-16T05:41:55Z
dc.date.issued2025
dc.description.abstractA new electro-optic phase shifter device architecture consisting of two lateral rail electrodes in doped silicon close to a waveguide with a liquid crystal cladding is demonstrated. Starting with a completed silicon photonics wafer of IMEC's iSiPP50G platform (including modulators, detectors, and metallization), the back-end-of-line stack is opened up locally down to the waveguides. Liquid crystal is deposited in the recesses using inkjet printing. The narrow gaps between the rail electrodes and the waveguide core allow for actuation with a low voltage, and increase the overlap with the actuated liquid crystal. The demonstrated device geometry has low carrier absorption losses even though the side-rails are doped. This allows an increased driving frequency, eliminating phase flicker. A phase shift of 2 π for 2.7 V is obtained within 100 µm, going up to 6 π at 10 V with an insertion loss of 1 dB. Models suggest a power consumption <1 nW. The performance of this phase shifter is unmatched by alternative techniques that either require a higher voltage, have a larger optical loss or consume more electrical power. A novel purely digital driving scheme is demonstrated enabled by the unique device architecture, simplifying the required driver electronics.
dc.description.wosFundingTextThe authors would like to thank both the National Growth Fund Program PhotonDelta and the US Air Force Office grant POLCA for supporting this research. This work was supported by the European Research Council through grant 725555 (PhotonicSWARM) and 101062689 (LIQUORICE), the Horizon 2020 programme through grants 780283 (MORPHIC) and 101070332 (PHORMIC) and the US Air Force Office of Scientific Research (AFOSR) through grant FA8655-23-1-7072 (POLCA). This work has also received funding from the PhotonDelta National Growth Fund programme -
dc.identifier.doi10.1002/adom.202500186
dc.identifier.issn2195-1071
dc.identifier.urihttps://imec-publications.be/handle/20.500.12860/45664
dc.publisherWILEY-V C H VERLAG GMBH
dc.source.beginpage2500186
dc.source.issue20
dc.source.journalADVANCED OPTICAL MATERIALS
dc.source.numberofpages10
dc.source.volume13
dc.subject.keywordsWAVE-GUIDE
dc.title

Efficient Low-Voltage Phase Shifter with Inkjet-Printed Liquid Crystal on a Silicon on Insulator Platform

dc.typeJournal article
dspace.entity.typePublication
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