Research paperExperimental CharacterizationHigh-harmonic generation enhancement with graphene heterostructuresI. Alonso Calafell, L. A. Rozema, A. Trenti, J. Bohn et al.arXiv·2022·10.1002/adom.202200715·arXiv:2203.14644AbstractWe investigate high-harmonic generation in graphene heterostructures consisting of metallic nanoribbons separated from a graphene sheet by either a few-nanometer layer of aluminum oxide or an atomic monolayer of hexagonal boron nitride. The nanoribbons amplify the near-field at the graphene layer relative to the externally applied pumping, thus allowing us to observe third- and fifth-harmonic generation in the carbon monolayer at modest pump powers in the mid-infrared. We study the dependence of the nonlinear signals on the ribbon width and spacer thickness, as well as pump power and polarization, and demonstrate enhancement factors relative to bare graphene reaching 1600 and 4100 for third- and fifth-harmonic generation, respectively.Read more
Graphene on SiO₂-Si-SiO₂ substrate with monolayer h-BN spacer and gold nanoribbon array; representative sample HBN 70.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or Contacth-BNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Graphene on SiO₂-Si-SiO₂ substrate with monolayer h-BN spacer and gold nanoribbon array; representative sample HBN 200.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or Contacth-BNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Graphene on SiO₂-Si-SiO₂ substrate with 5 nm Al₂O₃ spacer and gold nanoribbon array; representative sample ALO 500.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or ContactAl₂O₃Substrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Bare graphene on SiO₂-Si-SiO₂ substrate, used as reference for harmonic enhancement.1 characterization4 figuresExperimentalCStudied MaterialSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Gold nanoribbon array on the substrate without graphene, used as a control sample.1 preparation2 characterizations4 figuresExperimentalAuCapping Or ContactSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Substrate-only control sample.1 characterization4 figuresExperimentalSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Research paperExperimental CharacterizationHigh-harmonic generation enhancement with graphene heterostructuresI. Alonso Calafell, L. A. Rozema, A. Trenti, J. Bohn et al.arXiv·2022·10.1002/adom.202200715·arXiv:2203.14644AbstractWe investigate high-harmonic generation in graphene heterostructures consisting of metallic nanoribbons separated from a graphene sheet by either a few-nanometer layer of aluminum oxide or an atomic monolayer of hexagonal boron nitride. The nanoribbons amplify the near-field at the graphene layer relative to the externally applied pumping, thus allowing us to observe third- and fifth-harmonic generation in the carbon monolayer at modest pump powers in the mid-infrared. We study the dependence of the nonlinear signals on the ribbon width and spacer thickness, as well as pump power and polarization, and demonstrate enhancement factors relative to bare graphene reaching 1600 and 4100 for third- and fifth-harmonic generation, respectively.Read more
Graphene on SiO₂-Si-SiO₂ substrate with monolayer h-BN spacer and gold nanoribbon array; representative sample HBN 70.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or Contacth-BNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Graphene on SiO₂-Si-SiO₂ substrate with monolayer h-BN spacer and gold nanoribbon array; representative sample HBN 200.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or Contacth-BNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Graphene on SiO₂-Si-SiO₂ substrate with 5 nm Al₂O₃ spacer and gold nanoribbon array; representative sample ALO 500.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or ContactAl₂O₃Substrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Bare graphene on SiO₂-Si-SiO₂ substrate, used as reference for harmonic enhancement.1 characterization4 figuresExperimentalCStudied MaterialSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Gold nanoribbon array on the substrate without graphene, used as a control sample.1 preparation2 characterizations4 figuresExperimentalAuCapping Or ContactSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Substrate-only control sample.1 characterization4 figuresExperimentalSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Research paperExperimental CharacterizationHigh-harmonic generation enhancement with graphene heterostructuresI. Alonso Calafell, L. A. Rozema, A. Trenti, J. Bohn et al.arXiv·2022·10.1002/adom.202200715·arXiv:2203.14644AbstractWe investigate high-harmonic generation in graphene heterostructures consisting of metallic nanoribbons separated from a graphene sheet by either a few-nanometer layer of aluminum oxide or an atomic monolayer of hexagonal boron nitride. The nanoribbons amplify the near-field at the graphene layer relative to the externally applied pumping, thus allowing us to observe third- and fifth-harmonic generation in the carbon monolayer at modest pump powers in the mid-infrared. We study the dependence of the nonlinear signals on the ribbon width and spacer thickness, as well as pump power and polarization, and demonstrate enhancement factors relative to bare graphene reaching 1600 and 4100 for third- and fifth-harmonic generation, respectively.Read more
Graphene on SiO₂-Si-SiO₂ substrate with monolayer h-BN spacer and gold nanoribbon array; representative sample HBN 70.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or Contacth-BNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Graphene on SiO₂-Si-SiO₂ substrate with monolayer h-BN spacer and gold nanoribbon array; representative sample HBN 200.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or Contacth-BNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Graphene on SiO₂-Si-SiO₂ substrate with 5 nm Al₂O₃ spacer and gold nanoribbon array; representative sample ALO 500.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or ContactAl₂O₃Substrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Bare graphene on SiO₂-Si-SiO₂ substrate, used as reference for harmonic enhancement.1 characterization4 figuresExperimentalCStudied MaterialSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Gold nanoribbon array on the substrate without graphene, used as a control sample.1 preparation2 characterizations4 figuresExperimentalAuCapping Or ContactSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Substrate-only control sample.1 characterization4 figuresExperimentalSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Research paperExperimental CharacterizationHigh-harmonic generation enhancement with graphene heterostructuresI. Alonso Calafell, L. A. Rozema, A. Trenti, J. Bohn et al.arXiv·2022·10.1002/adom.202200715·arXiv:2203.14644AbstractWe investigate high-harmonic generation in graphene heterostructures consisting of metallic nanoribbons separated from a graphene sheet by either a few-nanometer layer of aluminum oxide or an atomic monolayer of hexagonal boron nitride. The nanoribbons amplify the near-field at the graphene layer relative to the externally applied pumping, thus allowing us to observe third- and fifth-harmonic generation in the carbon monolayer at modest pump powers in the mid-infrared. We study the dependence of the nonlinear signals on the ribbon width and spacer thickness, as well as pump power and polarization, and demonstrate enhancement factors relative to bare graphene reaching 1600 and 4100 for third- and fifth-harmonic generation, respectively.Read more
Graphene on SiO₂-Si-SiO₂ substrate with monolayer h-BN spacer and gold nanoribbon array; representative sample HBN 70.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or Contacth-BNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Graphene on SiO₂-Si-SiO₂ substrate with monolayer h-BN spacer and gold nanoribbon array; representative sample HBN 200.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or Contacth-BNSubstrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Graphene on SiO₂-Si-SiO₂ substrate with 5 nm Al₂O₃ spacer and gold nanoribbon array; representative sample ALO 500.2 preparations2 characterizations4 properties4 figuresExperimentalCStudied MaterialAuCapping Or ContactAl₂O₃Substrate / DielectricSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Bare graphene on SiO₂-Si-SiO₂ substrate, used as reference for harmonic enhancement.1 characterization4 figuresExperimentalCStudied MaterialSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Gold nanoribbon array on the substrate without graphene, used as a control sample.1 preparation2 characterizations4 figuresExperimentalAuCapping Or ContactSiO₂Substrate / DielectricSiSubstrate / DielectricExpand
Substrate-only control sample.1 characterization4 figuresExperimentalSiO₂Substrate / DielectricSiSubstrate / DielectricExpand