Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-01T08:23:45.165303Z
Paper Citation Record · LEDGER
As of 23 August 2026, this Paper Citation Record lists 64 of 64 outbound references and 0 inbound Pith citation observations for arXiv:2607.27385.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-01T08:23:45.165303Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-23T06:30:58.430688+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
64 of 64 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation 96593749-9d00-4402-b8ff-db09f84eb682 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Ultrawide bandgap in metamaterials via coupling of locally resonant and Bragg bandgaps , pages =
Reference 1
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation ffdfc40b-6082-49ff-b282-15f9e334914f · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model On the mechanism of bandgap formation in locally resonant finite elastic metamaterials , volume =
Reference 2
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Observation e78166df-1714-4bcb-bd1a-0d4e0b346195 · outbound
Reference 3
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Observation aabacf4a-7480-4ca4-8c62-532ef2f44ee6 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model and Ruzzene, M
Reference 4
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Observation 50baffc3-c3bc-48bb-8167-e7247d70e5a0 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Unresolved cited work
Reference 5
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Observation c8459eda-ba82-405c-948a-2fde900c1622 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Unresolved cited work
Reference 6
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Observation 849256d3-87d9-4eb0-bad1-d071d5034fbe · outbound
Reference 7
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Observation f2f0ab72-d8be-45f7-8999-3f396a724ac1 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model and Economou, Eleftherios N
Reference 8
Source-reported events for the cited work
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Observation edb9289d-4d57-455c-a6ff-9d1023ef68bd · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Enhanced band-gap properties of an acoustic metamaterial beam with periodically variable cross-sections , pages =
Reference 9
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Observation 4a353c49-f812-4f7f-bc24-e8f4b5c198be · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Ultra-wide low-frequency bandgap design of acoustic metamaterial via multi-material topology optimization , pages =
Reference 10
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Observation e77a8b33-8dbf-4dd4-a846-0b4096806554 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model European Journal of Mechanics - A/Solids , doi =
Reference 11
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Observation 23730f93-4e10-42cc-af85-a644cce0fa5d · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Time domain analysis of microstructured materials through the reduced relaxed micromorphic model , pages =
Reference 12
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Observation 8858eb73-4f2e-4fd1-b522-1045c33d6734 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Archive of Applied Mechanics , doi =
Reference 13
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Observation a7fff5c8-7379-45ad-bb1c-31057b686a9e · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Effective interface forces to model boundary effects in a finite-size metamaterial through the reduced relaxed micromorphic model , issn =
Reference 14
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Observation 6a523bb9-8dfb-4791-b582-b3ae3300873b · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model European Journal of Mechanics - A/Solids , doi =
Reference 15
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Observation c542b128-b965-4012-a13f-9bfcac3ea811 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model and Rizzi, G
Reference 16
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Observation f43ff5e3-0e3b-4ba5-81c2-33386784aefe · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model 2024 , title =
Reference 17
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Observation 8147a608-f8ea-44ec-a3fb-679275eb62bd · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Reduced relaxed micromorphic modeling of harmonically loaded metamaterial plates: investigating boundary effects in finite-size structures , pages =
Reference 18
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Observation 06e03247-89ac-475e-9cfe-5c9fd5910b09 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Modeling a labyrinthine acoustic metamaterial through an inertia-augmented relaxed micromorphic approach , pages =
Reference 19
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Observation 5b86968a-88e6-4d87-8d84-079b53e44d0f · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model and Rizzi, Gianluca and Madeo, Angela
Reference 20
Source-reported events for the cited work
correction dated 2023-04-10. Source: crossref record 10.1007/978-3-031-26186-2_46->10.1007/978-3-031-26186-2_36:correction, observed 2026-07-11T03:03:54.372448+00:00. This notice travels one citation hop only.
Observation 89e10e32-d295-4b96-b306-b0389a26de24 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Identification of Scale-Independent Material Parameters in the Relaxed Micromorphic Model Through Model-Adapted First Order Homogenization , pages =
Reference 21
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Observation 9b9a9e5f-d156-41aa-8285-a0510bbc772d · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Boundary and interface conditions in the relaxed micromorphic model: Exploring finite-size metastructures for elastic wave control , pages =
Reference 22
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Observation f2fa9ece-159a-4dd6-9e9c-68f8264806dc · outbound
Reference 23
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Observation 38ad238c-bdcb-4391-a1e3-c111f186e6b8 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model SMP-based chiral auxetic mechanical metamaterial with tunable bandgap function , pages =
Reference 24
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Observation cb47de0c-db80-48af-8d71-756740037b57 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Effective Description of Anisotropic Wave Dispersion in Mechanical Band-Gap Metamaterials via the Relaxed Micromorphic Model , pages =
Reference 25
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Unavailable: canonical work link unavailable.
Observation 9954f8a3-3d4e-4eba-aec3-5a1983d91f31 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model 2018 , title =
Reference 26
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Observation ee265072-702e-466c-ae59-7e62c4433484 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model and Berer, Thomas and Matsuda, Osamu , year =
Reference 27
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Observation c8259e52-95f8-4e7f-b183-09593953ef7b · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Learning the nonlinear dynamics of mechanical metamaterials with graph networks , pages =
Reference 28
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Unavailable: canonical work link unavailable.
Observation 82ce0228-574b-4581-acba-0d3d79527494 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Homogenization in locally resonant anisotropic metamaterials: mode conversion and selective wave polarization , volume =
Reference 29
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Observation f6f11365-c6a2-444d-a967-6dc33c73a65d · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Homogenization framework for rigid and non-rigid foldable origami metamaterials , pages =
Reference 30
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Observation 510c6ad2-3841-4f7d-9e3d-3e30ec39df13 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model and Han, Xu , year =
Reference 31
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Observation 7f4a66fb-582f-44e8-9fcd-527a5593ac91 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Archive of Applied Mechanics , doi =
Reference 32
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Observation 08520995-294e-4a18-98e7-891a20565376 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model and Hamila, N
Reference 33
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Observation 80b88b2d-b597-4a0a-bf68-3b8783347d44 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Relaxed micromorphic modeling of the interface between a homogeneous solid and a band-gap metamaterial: New perspectives towards metastructural design , pages =
Reference 34
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Observation a7dad908-0fb9-45fc-a8a7-601e887d4ed2 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Metamaterial shields for inner protection and outer tuning through a relaxed micromorphic approach , pages =
Reference 35
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Observation a95ca3e5-7ee0-4274-8193-caf547fd5bfe · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Frontiers in Materials , doi =
Reference 36
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Observation 64159fae-cd31-4696-94e8-ee34680f92f0 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Frequency- and angle-dependent scattering of a finite-sized meta-structure via the relaxed micromorphic model , pages =
Reference 37
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Observation 072dd63f-ddfe-4e63-8611-ba746681cddf · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Computer Methods in Applied Mechanics and Engineering , doi =
Reference 38
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Observation 2e520eed-674c-41df-9f15-5b06fdd44326 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Computational Mechanics , doi =
Reference 39
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Observation d3ba1318-9b68-45dc-aca4-c17b74bf7cc4 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model From frequency-dependent models to frequency-independent enriched continua for mechanical metamaterials , pages =
Reference 40
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Observation f2a5dc6e-4a34-4517-abd9-cc0cb87df59a · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Unresolved cited work
Reference 41
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Observation ba62c6bc-4868-41c8-b4b5-e2f46b20507f · outbound
Reference 42
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Observation ef10a6d8-dc09-4ea3-b813-32f19ababa74 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Lagrange and
Reference 43
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Observation 90f28728-fea5-45ca-961e-0d0e12fbad60 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Proceedings in Applied Mathematics and Mechanics , volume =
Reference 44
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Observation ff1d0a93-7997-4a37-825d-94057047f42a · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Proceedings in Applied Mathematics and Mechanics , volume =
Reference 45
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Observation 299b299c-c447-4c5d-9993-c7424c87749c · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Proceedings in Applied Mathematics and Mechanics , volume =
Reference 46
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Observation 4c239970-e140-4741-91c8-efe74b173671 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Unresolved cited work
Reference 47
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Observation 528f7569-24b3-4111-b343-afc9df8763ef · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Unresolved cited work
Reference 48
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Observation 1329ab54-eb64-4fab-8bbc-c0a0910012da · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model and Ganti, S
Reference 49
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Observation 53b786a7-30a2-4a3b-8b7e-2478065b3eb8 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Mechanics of Advanced Materials and Structures , volume =
Reference 50
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Observation 6f8017cf-7aff-4f06-88ac-93da0ec61371 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Broadband Sound Absorption with Low-Perforation Micro-Perforated Panels Coupled with Space-Coiling and Helmholtz Resonators: Numerical and Experimental Study , url =
Reference 51
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Observation 6704136b-1162-4e96-942f-824299f02f6b · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model 2026 , doi =
Reference 52
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Observation 700f7363-9ace-4108-bf17-390d32cacc62 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model and Bacca, Mattia
Reference 53
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No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.
Observation 626820d0-75f1-492c-967a-ef73017e2ca6 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model 2026 , issn =
Reference 54
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Observation 2167cde2-74d7-4ffb-9a77-fcab127bde2f · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Liupekevicius and J.A.W
Reference 55
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Observation f74d2eb1-3942-4b7f-addc-a0f9571162f0 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Unresolved cited work
Reference 56
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Observation 7b036dcb-ab56-4037-bef7-940a030a3bc2 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model 2025 , publisher =
Reference 57
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Observation e0afff2c-4e60-4cf1-9758-7487352cc41a · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Harnessing normal-shear coupling in metabarriers for deep sub-wavelength underwater noise control , url =
Reference 58
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Observation 52c2f727-8f32-4c62-8b68-892f4bb0402c · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model 2026 , eprint=
Reference 59
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Observation da7a8d1a-6ba5-4e75-8dd0-8e2459cd3eb0 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Unresolved cited work
Reference 60
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Observation c4c8438c-15ac-45ed-bdfb-211a7b44141b · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model International Journal of Solids and Structures , volume =
Reference 61
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Observation 9a2bf399-10e4-4b00-8e45-7fc226738a56 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Unresolved cited work
Reference 62
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Observation cacb2da1-81a9-4778-ab46-a086eccbeac4 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model and Romano, A
Reference 63
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Observation fa49f6f4-34b0-420c-a3d8-e12305e6ea71 · outbound
Breaking Scale Separation in Metamaterials' homogenization: Interface-Inertia-Enhanced Relaxed Micromorphic Model Unresolved cited work
Reference 64
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Unavailable: canonical work link unavailable.
No inbound Pith citation observations are available.