Research paperExperimental GrowthExperimental CharacterizationIon-Beam-Sputtered Mid-Infrared Coatings for Hybrid SupermirrorsLukas W. Perner, Valentin J. Wittwer, Gar-Wing Truong, Seth B. Cataño-Lopez et al.arXiv·2025·10.1364/ao.575163·arXiv:2508.21462AbstractWe report on the development of low-loss ion-beam-sputtered (IBS) mid-infrared coatings for hybrid supermirrors. Two highly reflective designs were realized: HR1, a 4-period a-Si/SiO₂ DBR with an Al₂O₃ bonding layer, and HR2, a 6-period a-Si/Ta₂O₅ DBR with an a-Si terminating layer for bonding. Combined with a GaAs/AlGaAs crystalline mirror, HR₂-based hybrids yielded a total loss of 9.3 ppm and excess loss of 6.8 ppm at 4.45 µm, with cavity finesse up to 396 000. For the first time, we used IBS-deposited a-Si directly as a bonding layer, verified its sub-angstrom roughness, and demonstrated excellent optical performance. This establishes a clear path toward scalable coatings for longer mid-infrared wavelengths, building on prior results in Nat. Commun. 14, 7846 (2023).Read more
AR-coated witness piece / backside coating design using a-Si, Ta₂O5, and SiO₂ on a superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialSiO₂Studied MaterialTa₂O₅Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
HR₁ witness piece with backside AR coating; a 4-period a-Si/SiO₂ DBR with terminating Al₂O₃ cap on superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialSiO₂Studied MaterialAl₂O₃Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
HR₂ witness piece with a 6-period a-Si/Ta₂O₅ DBR and terminating a-Si cap on superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialTa₂O₅Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
Bare superpolished silicon substrate used as a reference for FTIR and spectrophotometer measurements.2 characterizations2 figuresReferenceSiSubstrate / DielectricairSubstrate / DielectricExpand
Research paperExperimental GrowthExperimental CharacterizationIon-Beam-Sputtered Mid-Infrared Coatings for Hybrid SupermirrorsLukas W. Perner, Valentin J. Wittwer, Gar-Wing Truong, Seth B. Cataño-Lopez et al.arXiv·2025·10.1364/ao.575163·arXiv:2508.21462AbstractWe report on the development of low-loss ion-beam-sputtered (IBS) mid-infrared coatings for hybrid supermirrors. Two highly reflective designs were realized: HR1, a 4-period a-Si/SiO₂ DBR with an Al₂O₃ bonding layer, and HR2, a 6-period a-Si/Ta₂O₅ DBR with an a-Si terminating layer for bonding. Combined with a GaAs/AlGaAs crystalline mirror, HR₂-based hybrids yielded a total loss of 9.3 ppm and excess loss of 6.8 ppm at 4.45 µm, with cavity finesse up to 396 000. For the first time, we used IBS-deposited a-Si directly as a bonding layer, verified its sub-angstrom roughness, and demonstrated excellent optical performance. This establishes a clear path toward scalable coatings for longer mid-infrared wavelengths, building on prior results in Nat. Commun. 14, 7846 (2023).Read more
AR-coated witness piece / backside coating design using a-Si, Ta₂O5, and SiO₂ on a superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialSiO₂Studied MaterialTa₂O₅Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
HR₁ witness piece with backside AR coating; a 4-period a-Si/SiO₂ DBR with terminating Al₂O₃ cap on superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialSiO₂Studied MaterialAl₂O₃Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
HR₂ witness piece with a 6-period a-Si/Ta₂O₅ DBR and terminating a-Si cap on superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialTa₂O₅Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
Bare superpolished silicon substrate used as a reference for FTIR and spectrophotometer measurements.2 characterizations2 figuresReferenceSiSubstrate / DielectricairSubstrate / DielectricExpand
Research paperExperimental GrowthExperimental CharacterizationIon-Beam-Sputtered Mid-Infrared Coatings for Hybrid SupermirrorsLukas W. Perner, Valentin J. Wittwer, Gar-Wing Truong, Seth B. Cataño-Lopez et al.arXiv·2025·10.1364/ao.575163·arXiv:2508.21462AbstractWe report on the development of low-loss ion-beam-sputtered (IBS) mid-infrared coatings for hybrid supermirrors. Two highly reflective designs were realized: HR1, a 4-period a-Si/SiO₂ DBR with an Al₂O₃ bonding layer, and HR2, a 6-period a-Si/Ta₂O₅ DBR with an a-Si terminating layer for bonding. Combined with a GaAs/AlGaAs crystalline mirror, HR₂-based hybrids yielded a total loss of 9.3 ppm and excess loss of 6.8 ppm at 4.45 µm, with cavity finesse up to 396 000. For the first time, we used IBS-deposited a-Si directly as a bonding layer, verified its sub-angstrom roughness, and demonstrated excellent optical performance. This establishes a clear path toward scalable coatings for longer mid-infrared wavelengths, building on prior results in Nat. Commun. 14, 7846 (2023).Read more
AR-coated witness piece / backside coating design using a-Si, Ta₂O5, and SiO₂ on a superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialSiO₂Studied MaterialTa₂O₅Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
HR₁ witness piece with backside AR coating; a 4-period a-Si/SiO₂ DBR with terminating Al₂O₃ cap on superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialSiO₂Studied MaterialAl₂O₃Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
HR₂ witness piece with a 6-period a-Si/Ta₂O₅ DBR and terminating a-Si cap on superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialTa₂O₅Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
Bare superpolished silicon substrate used as a reference for FTIR and spectrophotometer measurements.2 characterizations2 figuresReferenceSiSubstrate / DielectricairSubstrate / DielectricExpand
Research paperExperimental GrowthExperimental CharacterizationIon-Beam-Sputtered Mid-Infrared Coatings for Hybrid SupermirrorsLukas W. Perner, Valentin J. Wittwer, Gar-Wing Truong, Seth B. Cataño-Lopez et al.arXiv·2025·10.1364/ao.575163·arXiv:2508.21462AbstractWe report on the development of low-loss ion-beam-sputtered (IBS) mid-infrared coatings for hybrid supermirrors. Two highly reflective designs were realized: HR1, a 4-period a-Si/SiO₂ DBR with an Al₂O₃ bonding layer, and HR2, a 6-period a-Si/Ta₂O₅ DBR with an a-Si terminating layer for bonding. Combined with a GaAs/AlGaAs crystalline mirror, HR₂-based hybrids yielded a total loss of 9.3 ppm and excess loss of 6.8 ppm at 4.45 µm, with cavity finesse up to 396 000. For the first time, we used IBS-deposited a-Si directly as a bonding layer, verified its sub-angstrom roughness, and demonstrated excellent optical performance. This establishes a clear path toward scalable coatings for longer mid-infrared wavelengths, building on prior results in Nat. Commun. 14, 7846 (2023).Read more
AR-coated witness piece / backside coating design using a-Si, Ta₂O5, and SiO₂ on a superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialSiO₂Studied MaterialTa₂O₅Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
HR₁ witness piece with backside AR coating; a 4-period a-Si/SiO₂ DBR with terminating Al₂O₃ cap on superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialSiO₂Studied MaterialAl₂O₃Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
HR₂ witness piece with a 6-period a-Si/Ta₂O₅ DBR and terminating a-Si cap on superpolished silicon substrate.1 preparation2 characterizations2 figuresExperimentala-SiStudied MaterialTa₂O₅Studied MaterialSiSubstrate / DielectricairSubstrate / DielectricExpand
Bare superpolished silicon substrate used as a reference for FTIR and spectrophotometer measurements.2 characterizations2 figuresReferenceSiSubstrate / DielectricairSubstrate / DielectricExpand