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- 01HRCBQ5QR04KQDNSZ16DTS24E classification C1.
- 01HRCBQ5QR04KQDNSZ16DTS24E date "2023".
- 01HRCBQ5QR04KQDNSZ16DTS24E language "eng".
- 01HRCBQ5QR04KQDNSZ16DTS24E type conference.
- 01HRCBQ5QR04KQDNSZ16DTS24E hasPart 01HRCBT6SW7DC8B8Y0DZ1FB3MG.pdf.
- 01HRCBQ5QR04KQDNSZ16DTS24E subject "Technology and Engineering".
- 01HRCBQ5QR04KQDNSZ16DTS24E doi "10.1109/CLEO/Europe-EQEC57999.2023.10232423".
- 01HRCBQ5QR04KQDNSZ16DTS24E isbn "9798350345995".
- 01HRCBQ5QR04KQDNSZ16DTS24E issn "2833-1052".
- 01HRCBQ5QR04KQDNSZ16DTS24E presentedAt urn:uuid:e5fb97b9-2d31-4a21-b2e3-08131fa500f0.
- 01HRCBQ5QR04KQDNSZ16DTS24E abstract "Wavelength conversion processes such as spontaneous parametric down conversion (SPDC) and optical parametric amplification (OPA) are key elements in integrated quantum optics. On-chip integration of these functionalities would allow for increased performance and huge scaling opportunities. However, CMOS-compatible platforms such as silicon and silicon nitride (SiN) lack a χ(2) nonlinearity due to their inversion symmetry. This work provides a solution by heterogeneously integrating periodically poled lithium niobate (PPLN) onto SiN wave-guides through micro-transfer printing (μTP) [1]. The μTP method is a scalable back-end process, allowing the fabrication of the photonic integrated circuit to remain CMOS-compatible.".
- 01HRCBQ5QR04KQDNSZ16DTS24E author 0DC8BBA8-E6D1-11E8-A028-64225707D3EF.
- 01HRCBQ5QR04KQDNSZ16DTS24E author 1FA2E37E-F0EE-11E1-A9DE-61C894A0A6B4.
- 01HRCBQ5QR04KQDNSZ16DTS24E author 2F8B674A-F59C-11E1-8C35-769E10BDE39D.
- 01HRCBQ5QR04KQDNSZ16DTS24E author 42BB2CDE-2FC8-11E4-BA01-1475B5D1D7B1.
- 01HRCBQ5QR04KQDNSZ16DTS24E author 4DCDEFFC-016B-11E4-9C4F-71044C2F559A.
- 01HRCBQ5QR04KQDNSZ16DTS24E author A1858136-5350-11E5-9A5E-1BFBB4D1D7B1.
- 01HRCBQ5QR04KQDNSZ16DTS24E author B5B072FA-49B6-11E4-AA90-F166B5D1D7B1.
- 01HRCBQ5QR04KQDNSZ16DTS24E author F6876ADC-F0ED-11E1-A9DE-61C894A0A6B4.
- 01HRCBQ5QR04KQDNSZ16DTS24E dateCreated "2024-03-07T11:45:30Z".
- 01HRCBQ5QR04KQDNSZ16DTS24E dateModified "2024-10-29T18:41:48Z".
- 01HRCBQ5QR04KQDNSZ16DTS24E name "High-efficiency second harmonic generation in heterogeneously-integrated periodically-poled lithium niobate on silicon nitride".
- 01HRCBQ5QR04KQDNSZ16DTS24E pagination urn:uuid:6da07387-eb5f-4275-af77-34d760085c46.
- 01HRCBQ5QR04KQDNSZ16DTS24E publisher urn:uuid:419b4af1-6874-44ad-aa29-7b5d6c88d993.
- 01HRCBQ5QR04KQDNSZ16DTS24E sameAs LU-01HRCBQ5QR04KQDNSZ16DTS24E.
- 01HRCBQ5QR04KQDNSZ16DTS24E sourceOrganization urn:uuid:27a5278f-d1e7-4de6-a9dc-60af743d6c5b.
- 01HRCBQ5QR04KQDNSZ16DTS24E sourceOrganization urn:uuid:c24518e1-021b-4a71-9ef8-9eb0760cfab9.
- 01HRCBQ5QR04KQDNSZ16DTS24E type C1.