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Photodetector Engineering with Plasmonic Properties
<!DOCTYPE html> <html lang="en" dir="ltr"> <head> <!-- Google tag (gtag.js) --> <script async src="https://www.googletagmanager.com/gtag/js?id=G-P63WKM1TM1"></script> <script> window.dataLayer = window.dataLayer || []; function gtag(){dataLayer.push(arguments);} gtag('js', new Date()); gtag('config', 'G-P63WKM1TM1'); </script> <!-- Yandex.Metrika counter --> <script type="text/javascript" > (function(m,e,t,r,i,k,a){m[i]=m[i]||function(){(m[i].a=m[i].a||[]).push(arguments)}; m[i].l=1*new Date(); for (var j = 0; j < document.scripts.length; j++) {if (document.scripts[j].src === r) { return; }} k=e.createElement(t),a=e.getElementsByTagName(t)[0],k.async=1,k.src=r,a.parentNode.insertBefore(k,a)}) (window, document, "script", "https://mc.yandex.ru/metrika/tag.js", "ym"); ym(55165297, "init", { clickmap:false, trackLinks:true, accurateTrackBounce:true, webvisor:false }); </script> <noscript><div><img src="https://mc.yandex.ru/watch/55165297" style="position:absolute; left:-9999px;" alt="" /></div></noscript> <!-- /Yandex.Metrika counter --> <!-- Matomo --> <!-- End Matomo Code --> <title>Photodetector Engineering with Plasmonic Properties</title> <meta name="description" content="Photodetector Engineering with Plasmonic Properties"> <meta name="keywords" content="Nanoparticles, plasmonic, plasmon-plasmon interaction, plasmonic photodetector. "> <meta name="viewport" content="width=device-width, initial-scale=1, minimum-scale=1, maximum-scale=1, user-scalable=no"> <meta charset="utf-8"> <meta name="citation_title" content="Photodetector Engineering with Plasmonic Properties"> <meta name="citation_author" content="Hasan Furkan Kurt"> <meta name="citation_author" content="Tugba Nur Atabey"> <meta name="citation_author" content="Onat Cavit Dereli"> <meta name="citation_author" content="Ahmad Salmanogli"> <meta name="citation_author" content="H. Selcuk Gecim"> <meta name="citation_publication_date" content="2021/01/03"> <meta name="citation_journal_title" content="International Journal of Electronics and Communication Engineering"> <meta name="citation_volume" content="15"> <meta name="citation_issue" content="2"> <meta name="citation_firstpage" content="94"> <meta name="citation_lastpage" content="98"> <meta name="citation_pdf_url" content="https://publications.waset.org/10011880/pdf"> <link href="https://cdn.waset.org/favicon.ico" type="image/x-icon" rel="shortcut icon"> <link href="https://cdn.waset.org/static/plugins/bootstrap-4.2.1/css/bootstrap.min.css" rel="stylesheet"> <link href="https://cdn.waset.org/static/plugins/fontawesome/css/all.min.css" rel="stylesheet"> <link href="https://cdn.waset.org/static/css/site.css?v=150220211555" rel="stylesheet"> </head> <body> <header> <div class="container"> <nav class="navbar navbar-expand-lg navbar-light"> <a class="navbar-brand" href="https://waset.org"> <img src="https://cdn.waset.org/static/images/wasetc.png" alt="Open Science Research Excellence" title="Open Science Research Excellence" /> </a> <button class="d-block d-lg-none navbar-toggler ml-auto" type="button" data-toggle="collapse" data-target="#navbarMenu" aria-controls="navbarMenu" aria-expanded="false" aria-label="Toggle navigation"> <span class="navbar-toggler-icon"></span> </button> <div class="w-100"> <div class="d-none d-lg-flex flex-row-reverse"> <form method="get" action="https://waset.org/search" class="form-inline my-2 my-lg-0"> <input class="form-control mr-sm-2" type="search" placeholder="Search Conferences" value="" name="q" aria-label="Search"> <button class="btn btn-light my-2 my-sm-0" type="submit"><i class="fas fa-search"></i></button> </form> </div> <div class="collapse navbar-collapse mt-1" id="navbarMenu"> <ul class="navbar-nav ml-auto align-items-center" id="mainNavMenu"> <li class="nav-item"> <a class="nav-link" href="https://waset.org/conferences" title="Conferences in 2024/2025/2026">Conferences</a> </li> <li class="nav-item"> <a class="nav-link" href="https://waset.org/disciplines" title="Disciplines">Disciplines</a> </li> <li class="nav-item"> <a class="nav-link" href="https://waset.org/committees" rel="nofollow">Committees</a> </li> <li class="nav-item dropdown"> <a class="nav-link dropdown-toggle" href="#" id="navbarDropdownPublications" role="button" data-toggle="dropdown" aria-haspopup="true" aria-expanded="false"> Publications </a> <div class="dropdown-menu" aria-labelledby="navbarDropdownPublications"> <a class="dropdown-item" href="https://publications.waset.org/abstracts">Abstracts</a> <a class="dropdown-item" href="https://publications.waset.org">Periodicals</a> <a class="dropdown-item" href="https://publications.waset.org/archive">Archive</a> </div> </li> <li class="nav-item"> <a class="nav-link" href="https://waset.org/page/support" title="Support">Support</a> </li> </ul> </div> </div> </nav> </div> </header> <main> <div class="container mt-4"> <div class="row"> <div class="col-md-9 mx-auto"> <form method="get" action="https://publications.waset.org/search"> <div id="custom-search-input"> <div class="input-group"> <i class="fas fa-search"></i> <input type="text" class="search-query" name="q" placeholder="Author, Title, Abstract, Keywords" value=""> <input type="submit" class="btn_search" value="Search"> </div> </div> </form> </div> </div> <div class="row mt-3"> <div class="col-sm-3"> <div class="card"> <div class="card-body"><strong>Commenced</strong> in January 2007</div> </div> </div> <div class="col-sm-3"> <div class="card"> <div class="card-body"><strong>Frequency:</strong> Monthly</div> </div> </div> <div class="col-sm-3"> <div class="card"> <div class="card-body"><strong>Edition:</strong> International</div> </div> </div> <div class="col-sm-3"> <div class="card"> <div class="card-body"><strong>Paper Count:</strong> 33093</div> </div> </div> </div> <div class="card publication-listing mt-3 mb-3"> <h5 class="card-header" style="font-size:.9rem">Photodetector Engineering with Plasmonic Properties</h5> <div class="card-body"> <p class="card-text"><strong>Authors:</strong> <a href="https://publications.waset.org/search?q=Hasan%20Furkan%20Kurt">Hasan Furkan Kurt</a>, <a href="https://publications.waset.org/search?q=Tugba%20Nur%20Atabey"> Tugba Nur Atabey</a>, <a href="https://publications.waset.org/search?q=Onat%20Cavit%20Dereli"> Onat Cavit Dereli</a>, <a href="https://publications.waset.org/search?q=Ahmad%20Salmanogli"> Ahmad Salmanogli</a>, <a href="https://publications.waset.org/search?q=H.%20Selcuk%20Gecim"> H. Selcuk Gecim</a> </p> <p class="card-text"><strong>Abstract:</strong></p> In the article, the main goal is to study the effect of the plasmonic properties on the photocurrent generated by a photodetector. Fundamentally, a typical photodetector is designed and simulated using the finite element methods. To utilize the plasmonic effect, gold nanoparticles with different shape, size and morphology are buried into the intrinsic region. Plasmonic effect is arisen through the interaction of the incoming light with nanoparticles by which electrical properties of the photodetector are manipulated. In fact, using plasmonic nanoparticles not only increases the absorption bandwidth of the incoming light, but also generates a high intensity near-field close to the plasmonic nanoparticles. Those properties strongly affect the generated photocurrent. The simulation results show that using plasmonic nanoparticles significantly enhances the electrical properties of the photodetectors. More importantly, one can easily manipulate the plasmonic properties of the gold nanoparticles through engineering the nanoparticles' size, shape and morphology. Another important phenomenon is plasmon-plasmon interaction inside the photodetector. It is shown that plasmon-plasmon interaction improves the electron-hole generation rate by which the rate of the current generation is severely enhanced. This is the key factor that we want to focus on, to improve the photodetector electrical properties. <iframe src="https://publications.waset.org/10011880.pdf" style="width:100%; height:400px;" frameborder="0"></iframe> <p class="card-text"><strong>Keywords:</strong> <a href="https://publications.waset.org/search?q=Nanoparticles" title="Nanoparticles">Nanoparticles</a>, <a href="https://publications.waset.org/search?q=plasmonic" title=" plasmonic"> plasmonic</a>, <a href="https://publications.waset.org/search?q=plasmon-plasmon%20interaction" title=" plasmon-plasmon interaction"> plasmon-plasmon interaction</a>, <a href="https://publications.waset.org/search?q=plasmonic%20photodetector." title=" plasmonic photodetector. "> plasmonic photodetector. </a> </p> <a href="https://publications.waset.org/10011880/photodetector-engineering-with-plasmonic-properties" class="btn btn-primary btn-sm">Procedia</a> <a href="https://publications.waset.org/10011880/apa" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">APA</a> <a href="https://publications.waset.org/10011880/bibtex" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">BibTeX</a> <a href="https://publications.waset.org/10011880/chicago" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">Chicago</a> <a href="https://publications.waset.org/10011880/endnote" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">EndNote</a> <a href="https://publications.waset.org/10011880/harvard" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">Harvard</a> <a href="https://publications.waset.org/10011880/json" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">JSON</a> <a href="https://publications.waset.org/10011880/mla" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">MLA</a> <a href="https://publications.waset.org/10011880/ris" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">RIS</a> <a href="https://publications.waset.org/10011880/xml" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">XML</a> <a href="https://publications.waset.org/10011880/iso690" target="_blank" rel="nofollow" class="btn btn-primary btn-sm">ISO 690</a> <a href="https://publications.waset.org/10011880.pdf" target="_blank" class="btn btn-primary btn-sm">PDF</a> <span class="bg-info text-light px-1 py-1 float-right rounded"> Downloads <span class="badge badge-light">616</span> </span> <p class="card-text"><strong>References:</strong></p> <br>[1] Yang, D., & Ma, D. (2018). Development of Organic Semiconductor Photodetectors: From Mechanism to Applications. Advanced Optical Materials, 1800522. <br>[2] Dong, Y., Gu, Y., Zou, Y., Song, J., Xu, L., Li, J., et al. (2016). Improving All-Inorganic Perovskite Photodetectors by Preferred Orientation and Plasmonic Effect. Small Journal, 5622-5632. <br>[3] Gosciniak, J., Atar, F., Corbett, B., & Rasras, M. (2019). Plasmonic Schottky photodetector with metal stripe embedded into semiconductor and with a CMOS compatible. Scientific Reports, 1-12. <br>[4] Huo, N., & Konstantatos, G. (2018). Recent Progress and Future Prospects of 2D-Based Photodetectors. Adv. Mater., 1-27. <br>[5] Ji, T., Zhang, H., Han, N., Wang, W., Wu, B., Li, G., et al. (2020). Plasmonic nanoprism enhanced quasi-2D Ruddlesden鈥揚opper layered perovskite photodetectors. Journal of Materials Chemistry C, 1110-1117. <br>[6] Kumar, M., Kojori, H. S., Kim, S. J., Park, H.-H., Kim, J., & Yun, J.-H. (2016). Plasmonic effect鈥揺nhanced Ag nanodisk incorporated ZnO/Si metal鈥搒emiconductor鈥搈etal photodetectors. J. Photon. Energy, 042508. <br>[7] Li, Y., Li, Z., Chi, C., Shan, H., Zheng, L., & Fang, Z. (2017). Plasmonics of 2D Nanomaterials: Properties and Applications. Advanced Science, 1600430. <br>[8] Ouyang, W., Teng, F., He, J.-H., & Fang, X. (2019). Enhancing the Photoelectric Performance of Photodetectors Based on Metal Oxide Semiconductors by Charge-Carrier Engineering. Advanced Science News, 1807672. <br>[9] SalmanOgli, A., & Rostami, A. (2013). Investigation of Surface Plasmon Resonance in Multilayered Onion-Like. IEEE Transactions on Nanotechnology, 831-838. <br>[10] SalmanOgli, A., & Rostami, A. (2013). Plasmon Modes Hybridization Influence on Nano-Bio-Sensors Specification. IEEE Transactions on Nanotechnology, 858-866. <br>[11] Salmanogli, A., Gokcen, D., & Gecim, H. S. (2019). Plasmonic Effect on Quantum Dot Photodetector Responsivity. IEEE Sensors Journal, 3660-3667. <br>[12] SalmanOgli, A., Nasseri, B., & Piskin, E. (2017). Plasmon-Plasmon Interaction effect on Reproducible Surface-Enhanced Raman Scattering for Dye Molecule Detection. Sensors and Actuators A, 87-98. <br>[13] Tanzid, M., Ahmadivand, A., Zhang, R., Cerjan, B., Sobhani, A., Yazdi, S., et al. (2018). Combining plasmonic hot carrier generation with free carrier absorption for high-performance near-infrared silicon-based photodetection. ACS Publications, 3472-3477. <br>[14] Wang, L., He, S.-J., Wang, K.-Y., Luo, H.-H., Hu, J.-G., Yu, Y.-Q., et al. (2018). Dual-plasmonic Au/graphene/Au enhanced ultrafast, broadband, self-driven Silicon Schotty Photodetector. Nanotechnology, 505203. <br>[15] Zhai, Y., Li, Y., Ji, J., Wu, Z., & Wang, Q. (2020). Hot Electron Generation in Silicon Micropyramids Covered with Nanometer-Thick Gold Films for Near-Infrared Photodetectors. 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