Publication:
Femtosecond laser written and selectively etched structures for micro-optofluidics in a monolithic lithium niobate chip

cris.customurl 19901
cris.virtual.department Experimentalphysik und Materialwissenschaften
cris.virtual.department Experimentalphysik und Materialwissenschaften
cris.virtual.department Experimentalphysik und Materialwissenschaften
cris.virtual.departmentbrowse Experimentalphysik und Materialwissenschaften
cris.virtual.departmentbrowse Experimentalphysik und Materialwissenschaften
cris.virtual.departmentbrowse Experimentalphysik und Materialwissenschaften
cris.virtualsource.department a7097458-3a70-4df9-a12d-9958a72bca23
cris.virtualsource.department e25ab10e-f014-405b-ae9d-5dfa5939c704
cris.virtualsource.department d6e51760-3db3-4f73-b6e0-a1ffbb9b68f0
dc.contributor.author Nwatu, Daniel Tochi
dc.contributor.author Kip, Detlef
dc.contributor.author Hasse, Kore
dc.date.issued 2024
dc.description.abstract Femtosecond laser written and selectively etched 3D-micro-optofluidic devices have been fabricated with high selectivity (~2900) and low roughness (~23 nm), combining a waveguide with a microchannel in the volume of a monolithic lithium niobate chip.
dc.description.version VoR
dc.identifier.doi 10.1364/cleo_at.2024.jtu2a.70
dc.identifier.isbn 978-1-957171-39-5
dc.identifier.uri https://openhsu.ub.hsu-hh.de/handle/10.24405/19901
dc.language.iso en
dc.publisher Optica Publishing Group
dc.relation.conference CLEO: Applications and Technology 2024, CLEO 2024 ; Charlotte, North Carolina ; May 5–10, 2024
dc.relation.orgunit Experimentalphysik und Materialwissenschaften
dc.rights.accessRights metadata only access
dc.title Femtosecond laser written and selectively etched structures for micro-optofluidics in a monolithic lithium niobate chip
dc.type Konferenzbeitrag
dcterms.bibliographicCitation.booktitle CLEO 2024 : Proceedings
dcterms.bibliographicCitation.originalpublisherplace Washington, DC
dspace.entity.type Publication
hsu.uniBibliography
Files