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| papers [2026/05/11 08:31] – [Table] alehen | papers [2026/05/19 14:34] (current) – [Table] yaxin |
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| **Conventional NbN/NbTiN fabrication:** | **Conventional NbN/NbTiN fabrication:** |
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| ^ Title ^ Author ^ Comment ^ Link ^ Keywords ^ | ^ Title ^ Author ^ Comment ^ Link ^ Keywords ^ |
| | Development of superconducting single particle detector transition edge sensor | Carlo Pepe | Pg. 74 Interesting diagram on laser experiment, Pg. 96 new fabrication ideas for insulating layers | [[https://iris.inrim.it/retrieve/handle/11696/82079/3f2fde4f-2860-4967-abac-7ede058ca199/Phd_thesis_C_pepe_2024.pdf|Link]] | Characterization, fabrication | | | Development of superconducting single particle detector transition edge sensor | Carlo Pepe | Pg. 74 Interesting diagram on laser experiment, Pg. 96 new fabrication ideas for insulating layers | [[https://iris.inrim.it/retrieve/handle/11696/82079/3f2fde4f-2860-4967-abac-7ede058ca199/Phd_thesis_C_pepe_2024.pdf|Link]] | Characterization, fabrication | |
| | Properties of NbxTi(1-x)N thin films deposited\\ on 300 mm silicon wafers for upscaling\\ superconducting digital circuits. | Daniel Pérez Lozano | Explains the stiochiometry differences between two samples and different positions within the substrate, which ok we can simulate but shouldn't be an issue | [[https://arxiv.org/pdf/2311.09772|Link]] | | | | Properties of NbxTi(1-x)N thin films deposited\\ on 300 mm silicon wafers for upscaling\\ superconducting digital circuits. | Daniel Pérez Lozano | Explains the stiochiometry differences between two samples and different positions within the substrate, which ok we can simulate but shouldn't be an issue | [[https://arxiv.org/pdf/2311.09772|Link]] | | |
| | Superconducting properties and chemical composition of\\ NbTiN thin films with different thickness | L. Zhang | Page 3 has the value for the NbTiN lattice constant which appears to be 0.435nm, so the so the sim should use triple that which turns out to be 1.3nm | [[https://watermark02.silverchair.com/122603_1_online.pdf?token=AQECAHi208BE49Ooan9kkhW_Ercy7Dm3ZL_9Cf3qfKAc485ysgAABZkwggWVBgkqhkiG9w0BBwagggWGMIIFggIBADCCBXsGCSqGSIb3DQEHATAeBglghkgBZQMEAS4wEQQMpdvVgpzms3W0W3L3AgEQgIIFTCoPu4ZWcVh5x7GSxt37R76PqUfksQEVqeT8vfInZNFh2rWtWINd57EP35Nz3mYnNqSsHeVrmRSAVRnbvrIAV3tAp7rUybn4Pp7Hrmb649rBx_sqIJLZb4zJStmB8KUZp51rIIR31onRHDDKdSZEB-7lU39Q6F7j0v0aXvUcEEaO7eqsYtcmIkp1q8qhLRoqyalkMnZZS58aI4Arczcnq6337J-cRwBovZMBetJl8ry4wyXQYmSzojfWgZOh1pQk6BaXi9q-YwrQNu0NCzivfEsAqwGsgBUtmMVLdqVHH_4lvEBo4DPa35iB2EgGX4g6zpgIuL3hpQMIfF7cO8AIoqmNHjZTGG-F9-mVbssl70QqLzUT8o22bqxMVDW0oLjsAytOFtkPl3ZKM-Nsl6IZk7uoul1D3e6PRYMfBjTuy-58OZ1mingcUU64p6jOdjuO63ogwMIy-C2NDMph-vpd2_Jbhj--hG4Sj5tn4-bKeSseT6phBabO2t7_RfI3M4IkO44Ww_ES5a5SsbKvOaP6XxwErG4wnt19l4WzM5WJLKJ-LWF8koOg-b-ZbJV3yxTqxJzpBrepsb3RtxrFvJluPoDVAKrG9gjzm9cUqihQhXdQkTVyzntg_icsIIQQOdNPYbYLIXF4fxc3dFkSErOMetLlTUpXXcUHOJUBNGc5P2euI93hA83jqGkOL_-LS2dFNM9YgOLtFXJYnR5sO_8wpdW0ie8d1UwnywW-6qvBplOUvY3LR-G1G3ojIJScGE41PWqPWjxx2wdeQ0u50A5UtoR41cAtkLbsRgc1-ups1zaICHeq11BZaXkKEiHUsFLrMHqeoucIjvpPzo2BObpRquNO62PlOYhHJqtXt16V1m8mFAe8XuRPZ1zizuH6XqYVbSd8oNRe3-P13GDrm7pMLbgd8c_Itqhl5MjPC4ChwXSFMjK8jI7nE7z8nEfPULF6XlsA3JiOof7NFx5e8ZgSFafc69kcHeah6oHizRLPXy6Iuzs3GX6q-3YLnpi2xefShFOgSYRtdCAAjY1oYdU9RzYRqkhzIocIV8ezMSTah8llViemG0lNRrRgU2f3pdlwu-UILGSAnOV0OvhmfmGx1X1b70vfydsaC1RDnMpf5maT9KvtmZFvsHGVL0rpCNA8XDz8ddBUmjjQzLMYnwuE0ko7elBkpv2vNOxC3Y3jqZjuvIjcYSCipuxeZA5c9wc957AApbFwCyshYikbvh30IBqfS8Idk-Ail441rSMFwocJD8FZU-kURRgI-xB776J3srCZkXmV7Wl2WRAwf8yImF77rzI-o6kq1m8NlrDyt87J3-v_dqvOa985NJl2NqJJzGT7VSXlM0r9fc3d8GKvDwgXiCqdJJiPmBt5aUXmbVbZRJwOVTaZSw6L4AFY4LNmoNM4I2hZnh7rv4H2yZxP5mEd_1bLA-0-XAeD1hfzzwAuMiEsr_HKh9H_8NYCrYc--UtdF1XMIfsB_54KoO-1555g4C0itqJInfLV2RMQ-9QVn9sNiFL2G03tUjBqT6Tix4P8TIKAfJIiyymqHy0e7a-SDQGeJP0r-wtQRR1GsUI4_R592NZKokWcouxBCYxfnxBn7PNrfmvmaB3vNSRz059E-mwgWQsllGI6c0EwE41POuxo95B225iRgy61IlRdNdoImhJ7K72Ka8B9L1DiaW2pJiiExAqvyKE_QyY2EctlEPkzBJCFwZilsfsTaxNczWWzcWkundFUF8BnfxFuh_xm7i9nop_o4OFhGwBmV3zZMb7i5ZXbbYKeZ_L-qjFh32ZaHcs1n8WPJVgueAZ|Link]] | Lattice constant for NbTiN | | | Superconducting properties and chemical composition of\\ NbTiN thin films with different thickness | L. Zhang | Page 3 has the value for the NbTiN lattice constant which appears to be 0.435nm, so the so the sim should use triple that which turns out to be 1.3nm | [[https://watermark02.silverchair.com/122603_1_online.pdf?token=AQECAHi208BE49Ooan9kkhW_Ercy7Dm3ZL_9Cf3qfKAc485ysgAABZkwggWVBgkqhkiG9w0BBwagggWGMIIFggIBADCCBXsGCSqGSIb3DQEHATAeBglghkgBZQMEAS4wEQQMpdvVgpzms3W0W3L3AgEQgIIFTCoPu4ZWcVh5x7GSxt37R76PqUfksQEVqeT8vfInZNFh2rWtWINd57EP35Nz3mYnNqSsHeVrmRSAVRnbvrIAV3tAp7rUybn4Pp7Hrmb649rBx_sqIJLZb4zJStmB8KUZp51rIIR31onRHDDKdSZEB-7lU39Q6F7j0v0aXvUcEEaO7eqsYtcmIkp1q8qhLRoqyalkMnZZS58aI4Arczcnq6337J-cRwBovZMBetJl8ry4wyXQYmSzojfWgZOh1pQk6BaXi9q-YwrQNu0NCzivfEsAqwGsgBUtmMVLdqVHH_4lvEBo4DPa35iB2EgGX4g6zpgIuL3hpQMIfF7cO8AIoqmNHjZTGG-F9-mVbssl70QqLzUT8o22bqxMVDW0oLjsAytOFtkPl3ZKM-Nsl6IZk7uoul1D3e6PRYMfBjTuy-58OZ1mingcUU64p6jOdjuO63ogwMIy-C2NDMph-vpd2_Jbhj--hG4Sj5tn4-bKeSseT6phBabO2t7_RfI3M4IkO44Ww_ES5a5SsbKvOaP6XxwErG4wnt19l4WzM5WJLKJ-LWF8koOg-b-ZbJV3yxTqxJzpBrepsb3RtxrFvJluPoDVAKrG9gjzm9cUqihQhXdQkTVyzntg_icsIIQQOdNPYbYLIXF4fxc3dFkSErOMetLlTUpXXcUHOJUBNGc5P2euI93hA83jqGkOL_-LS2dFNM9YgOLtFXJYnR5sO_8wpdW0ie8d1UwnywW-6qvBplOUvY3LR-G1G3ojIJScGE41PWqPWjxx2wdeQ0u50A5UtoR41cAtkLbsRgc1-ups1zaICHeq11BZaXkKEiHUsFLrMHqeoucIjvpPzo2BObpRquNO62PlOYhHJqtXt16V1m8mFAe8XuRPZ1zizuH6XqYVbSd8oNRe3-P13GDrm7pMLbgd8c_Itqhl5MjPC4ChwXSFMjK8jI7nE7z8nEfPULF6XlsA3JiOof7NFx5e8ZgSFafc69kcHeah6oHizRLPXy6Iuzs3GX6q-3YLnpi2xefShFOgSYRtdCAAjY1oYdU9RzYRqkhzIocIV8ezMSTah8llViemG0lNRrRgU2f3pdlwu-UILGSAnOV0OvhmfmGx1X1b70vfydsaC1RDnMpf5maT9KvtmZFvsHGVL0rpCNA8XDz8ddBUmjjQzLMYnwuE0ko7elBkpv2vNOxC3Y3jqZjuvIjcYSCipuxeZA5c9wc957AApbFwCyshYikbvh30IBqfS8Idk-Ail441rSMFwocJD8FZU-kURRgI-xB776J3srCZkXmV7Wl2WRAwf8yImF77rzI-o6kq1m8NlrDyt87J3-v_dqvOa985NJl2NqJJzGT7VSXlM0r9fc3d8GKvDwgXiCqdJJiPmBt5aUXmbVbZRJwOVTaZSw6L4AFY4LNmoNM4I2hZnh7rv4H2yZxP5mEd_1bLA-0-XAeD1hfzzwAuMiEsr_HKh9H_8NYCrYc--UtdF1XMIfsB_54KoO-1555g4C0itqJInfLV2RMQ-9QVn9sNiFL2G03tUjBqT6Tix4P8TIKAfJIiyymqHy0e7a-SDQGeJP0r-wtQRR1GsUI4_R592NZKokWcouxBCYxfnxBn7PNrfmvmaB3vNSRz059E-mwgWQsllGI6c0EwE41POuxo95B225iRgy61IlRdNdoImhJ7K72Ka8B9L1DiaW2pJiiExAqvyKE_QyY2EctlEPkzBJCFwZilsfsTaxNczWWzcWkundFUF8BnfxFuh_xm7i9nop_o4OFhGwBmV3zZMb7i5ZXbbYKeZ_L-qjFh32ZaHcs1n8WPJVgueAZ|Link]] | Lattice constant for NbTiN | |
| | | N concentration effects on structure and superconductivity of NbN thin films | Shailesh Kalal, Mukul Gupta, Rajeev Rawat | Nitrogen composition in NbTiN films | [[https://www.sciencedirect.com/science/article/pii/S0925838820322891?via%3Dihub|Link]] | | |
| | | Atomic structure of a NbTiN/AlN/NbTiN Josephson junction grown by molecular-beam epitaxy | Edwin Supple, Christopher J. K. Richardson, Brian P. Gorman | Nitrogen composition in NbTiN films | [[https://pubs.aip.org/avs/jva/article/42/4/042701/3289332/Atomic-structure-of-a-NbTiN-AlN-NbTiN-Josephson|Link]] | | |
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| **Electronics Design and Modeling** | **Electronics Design and Modeling** |