Tamm Plasmonic-Based Elliptical Anisotropic Photonic Crystals with Multifunctional Optical features | Research Square window.SnipcartSettings = { analytics: { enabled: false } }; (function() { var accessVector = localStorage.getItem('access_vector') || ''; window.dataLayer = window.dataLayer || []; if (accessVector) { window.dataLayer.push({ user: { profile: { profileInfo: { snid: accessVector } } } }); } })(); (function(w,d,s,l,i){w[l]=w[l]||[];w[l].push({'gtm.start':new Date().getTime(),event:'gtm.js'});var f=d.getElementsByTagName(s)[0],j=d.createElement(s),dl=l!='dataLayer'?'&l='+l:'';j.async=true;j.src='https://www.googletagmanager.com/gtm.js?id='+i+dl;f.parentNode.insertBefore(j,f);})(window,document,'script','dataLayer','GTM-K279D39R'); Browse Preprints In Review Journals COVID-19 Preprints AJE Video Bytes Research Tools Research Promotion AJE Professional Editing AJE Rubriq About Preprint Platform In Review Editorial Policies Our Team Advisory Board Help Center Sign In Submit a Preprint Cite Share Download PDF Article Tamm Plasmonic-Based Elliptical Anisotropic Photonic Crystals with Multifunctional Optical features Shohreh Jooyandeh, Mahmood Hosseini Farzad This is a preprint; it has not been peer reviewed by a journal. https://doi.org/ 10.21203/rs.3.rs-8224944/v1 This work is licensed under a CC BY 4.0 License Status: Under Review Version 1 posted 10 You are reading this latest preprint version Abstract In recent years, multifunctional photonic structures have gained increasing interest due to their ability to perform diverse optical tasks within a single platform. In this work, we design and investigate a one-dimensional anisotropic photonic crystal that simultaneously exhibits high-performance optical sensing, filtering, nonreciprocal transmission, and an electromagnetically induced transparency (EIT)-like phenomenon. The structure consists of periodic layers of SiO₂ and a low-index medium with a refractive index ranging from 1.36 to 1.44, along with a thin gold film supporting the excitation of a Tamm Plasmon Mode (TPM). To enhance and diversify the optical functionalities, an elliptically anisotropic metamaterial layer is incorporated into the periodic stack. Numerical simulations reveal that the structure not only exhibits a sharp TPM-related resonance shift in response to refractive index changes but also functions as an effective narrowband optical filter. Furthermore, the presence of anisotropy introduces nonreciprocal transmission characteristics and enables the appearance of an EIT-like transparency window within the reflection spectrum. These results demonstrate the potential of this anisotropic photonic crystals as a compact and multifunctional platform for advanced photonic applications. Physical sciences/Optics and photonics Physical sciences/Physics Anisotropic photonic crystal Tamm plasmon mode Multifunctional photonic structure Electromagnetic induced transparency Nonreciprocal transmission Sensing Full Text Additional Declarations No competing interests reported. Cite Share Download PDF Status: Under Review Version 1 posted Editorial decision: Revision requested 06 Feb, 2026 Reviews received at journal 05 Feb, 2026 Reviewers agreed at journal 27 Jan, 2026 Reviews received at journal 15 Dec, 2025 Reviewers agreed at journal 09 Dec, 2025 Reviewers invited by journal 07 Dec, 2025 Editor invited by journal 04 Dec, 2025 Editor assigned by journal 02 Dec, 2025 Submission checks completed at journal 02 Dec, 2025 First submitted to journal 27 Nov, 2025 You are reading this latest preprint version Research Square lets you share your work early, gain feedback from the community, and start making changes to your manuscript prior to peer review in a journal. As a division of Research Square Company, we’re committed to making research communication faster, fairer, and more useful. We do this by developing innovative software and high quality services for the global research community. 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