حمید
حیدرزاده، دكتراي مهندسي برق گرایش الکترونیک و دانشیار گروه مهندسی برق و
کامپیوتر دانشگاه محقق اردبيلي ميباشد. دكتر حیدرزاده مدرك كارشناسي مهندسی
برق-الکترونیک را از دانشگاه تبریز در سال 1389 و مدارك كارشناسي ارشد مهندسی برق
گرایش الکترونیک (افزاره های میکرو و نانو الکترونیک) و دكترای مهندسی
برق-الکترونیک با تخصص افزاره های میکرو و نانو الکترونیک را از دانشگاه تبریز به
ترتیب در سالهای 1391 و 1395 اخذ كرده است. حوزههای مورد علاقه ايشان الکترونیک
با تمرکز بر افزاره های میکرو و نانو الکترونیک شامل ادوات پلاسمونیک، سلول های
خورشیدی، بایو سنسورها و ... ميباشد. ایشان در سال های 2021، 2022، 2023، 2024،
2025 جزو دانشمندان دو درصد برتر جهان بوده است. دروس تدريس
شده توسط ايشان شامل الکترونیک نوری، افزاره های نیمه رسانا، شبیه سازی افزاره های
نیمه رسانا، مدارهای مجتمع نوری، فیزیک الکترونیک، مدارهای پالس و دیجیتال و الکترونیک II ميباشد.
1392-1395 دکتری مهندسی برق-الکترونیک (مدارات
مجتمع نوری)، دانشگاه تبریز، تبریز، ایران
1389-1391 کارشناسی ارشد
مهندسی برق-الکترونیک (مدارات مجتمع نوری)، دانشگاه تبریز، تبریز، ایران
1385-1389
کارشناسی مهندسی برق-الکترونیک (مدارات مجتمع نوری)، دانشگاه تبریز، تبریز،
ایران
1-جزو
دانشمندان دو درصد برتر جهان در سال 2024
2-جزو
دانشمندان دو درصد برتر جهان در سال 2023
3-جزو دانشمندان دو
درصد برتر جهان در سال 2022
4-جزو دانشمندان دو
درصد برتر جهان در سال 2021
5- جزو دانشمندان دو درصد برتر جهان در سال 2020
6-گذراندن خدمت
سربازي با استفاده از سهمیه بنیاد ملی نخبگان
7-دریافت حمایت
تشویقی از ستاد ویژه توسعه فناوری نانو برای 6 مقاله آی اس آی
1-سلول
های خورشیدی راندمان بالا بر پایه سیلیکون
2-الکترونیک
نوری و ادوات مبتنی بر ساختارهای نیمه هادی
3-افزاره های میکرو و نانو الکترونیک
4-افزاره
های الکترواپتیک و مدیریت نور با استفاده از نانوذرات پلاسمونیک
5-بایوسنسورهای
نوری مبتنی بر ساختارهای نانو پلاسمونیک
6-ادوات اپتوالکترونیک
49 - Rafighirani, Y., Javidan, J. and Heidarzadeh, H., 2024. Polarization-independent tunable multi-band terahertz absorber based on graphene structure to design the ultra-high sensitive biosensors. Physica Scripta, 99(7), p.075014.
48 - Parviz, M., Shokorlou, Y.M. and Heidarzadeh, H., 2024. Structure of plasmonic multi spectral Apta sensor and analyzing of bulk and surface sensitivity. Scientific Reports, 14(1), p.13245.
47 - Rafighirani, Y., Javidan, J. and Heidarzadeh, H., 2024. Development of a Multi-Band High-Sensitivity Polarization-Independent Absorber: A Biosensor for Simultaneous Detection of Multiple Cancer Biomarkers. Plasmonics, pp.1-9.
46 - Shokorlou, Y.M., Heidarzadeh, H. and Parviz, M., 2024. Multispectral nano-cavity-based plasmonic refractive index sensor: Higher bulk and surface sensitivity for detection of biological analytes. Optics and Lasers in Engineering, 180, p.108296.
45 - Heidarzadeh, H., 2023. Characteristics analysis of leakage current in an array of InSb Photodetector: The effect of compressive and tensile stresses. physica status solidi (b), 260(3), p.2200358.
44 - Asl, A.F., Heidarzadeh, H. and Bahador, H., 2023. Stepped metal gratings as an efficient way to design a broadband absorption efficiency and overcome recombination degradation in an organic solar cell. Physica Scripta, 98(4), p.045906.
43 - Shokorlou, Y.M. and Heidarzadeh, H., 2022. Multispectral plasmonic biosensors based on a Penta-supercell metamaterial for detection of prostate-specific antigen: Ultrasensitive in LC resonance mode. Biosensors and Bioelectronics, 217, p.114722.
42 - Shahabi, T., Heidarzadeh, H. and Bahador, H., 2023. Dual metallic-based plasmonic back reflector to broaden the absorption spectra of a thin film amorphous silicon solar cell. Optics Communications, 544, p.129623.
41 - Shokorlou, Y.M. and Heidarzadeh, H., 2023. Mirrored nano-structures plasmonic biosensor using two-dimensional materials for detection of PSA. Optics and Lasers in Engineering, 170, p.107762.
40 - Rafighirani, Y., Javidan, J. and Heidarzadeh, H., 2024. Polarization-independent tunable multi-band terahertz absorber based on graphene structure to design the ultra-high sensitive biosensors. Physica Scripta, 99(7), p.075014.
39 - Shahamat, Mehran Abdolrahimi, Hamid Heidarzadeh, and Hamid Bahador. "Performance improvement of an ultra-thin amorphous silicon solar cell using multilayers chirped diffraction back gratings." Physica Scripta 97.3 (2022): 030004.
38 - Heidarzadeh, Hamid, Abolfazl Jangjoy, and Hamid Bahador. "Use of Coupled Al-Ag Bimetallic Cylindrical Nanoparticles to Improve the Photocurrent of a Thin-Film Silicon Solar Cell." Plasmonics (2022): 1-7.
37 - Saboor, Fahimeh Hooriabad, Samaneh Hadian-Ghazvini, and Hamid Heidarzadeh. "Design and performance simulation of a highly sensitive nano-biosensor based on a realistic array of plasmonic synthesized nanostructures." Photonics and Nanostructures-Fundamentals and Applications 49 (2022): 100991.
36 - Heidarzadeh, Hamid. "Design and simulation of a quantum dot-based optical using selective energy contacts to simultaneous detection of multi-wavelengths." Journal of Modeling in Engineering (2022).
35 - Heidarzadeh, Hamid, Ali Rostami, and Mahboubeh Dolatyari. "Excellent properties of cylindrical quantum dots for the design of hot-carrier assisted IBSCs with appropriate ESCs." Optical and Quantum Electronics 54.8 (2022): 1-14.
34 - Taghipour, Ata, and Hamid Heidarzadeh. "Design and Analysis of Highly Sensitive LSPR-Based Metal–Insulator–Metal Nano-Discs as a Biosensor for Fast Detection of SARS-CoV-2." Photonics. Vol. 9. No. 8. Multidisciplinary Digital Publishing Institute, 2022.
33 - Zarerasouli, Parisa, Hamid Bahador, and Hamid Heidarzadeh. "Performance improvement of an ultra-thin film solar cell based on optimized CIGS (Cu (In1-x, Gax) Se2) using appropriate plasmonic nanoparticles." Optical Materials 131 (2022): 112729.
32 - Heidarzadeh, H., & Bahador, H. (2021). Photocurrent improvement of an ultra-thin silicon solar cell using cascaded cylindrical shape plasmonic nanoparticles. Physica Scripta, 96(5), 055501.
31 - Jangjoy, Abolfazl, Hamid Bahador, and Hamid Heidarzadeh. "A comparative study of a novel anti-reflective layer to improve the performance of a thin-film GaAs solar cell by embedding plasmonic nanoparticles." Plasmonics 16.2 (2021): 395-401.
30 - Heidarzadeh, H., & Tavousi, A. (2021). Design of an LSPR-Enhanced Ultrathin CH3NH3PbX3 Perovskite Solar Cell Incorporating Double and Triple Coupled Nanoparticles. Journal of Electronic Materials, 50(4), 1817-1826.
29 - Heidarzadeh, Hamid. "Effect of parasitic absorption of the plasmonic cubic nanoparticles on the performance of a plasmonic assisted halide thin-film perovskite solar cell." Solar Energy 223 (2021): 293-301.
28 - Vafaie, R. H., & Heidarzadeh, H. (2021). AC electrothermal assisted plasmonic biosensor for detection of low-concentration biological analytes. Optics & Laser Technology, 140, 107078.
27 - Eskandari, M., Rostami, G., Dolatyari, M., Rostami, A., & Heidarzadeh, H. (2021). Optimization of power conversion efficiency in multi-band solar cells (theoretical investigation using GA optimization). Optical and Quantum Electronics, 53(8), 1-10.
26 - Heidarzadeh, Hamid. "Simulation and analysis of the performances of a thin plasmonic-based perovskite absorber by subtracting the parasitic absorption of nano-cylinders." Optical and Quantum Electronics 53.10 (2021): 1-12.
25 - Heidarzadeh, Hamid. "Analysis and simulation of a plasmonic biosensor for hemoglobin concentration detection using noble metal nano-particles resonances." Optics Communications 459 (2020): 124940.
24 - Heidarzadeh, Hamid, Ali Rostami, and Mahboubeh Dolatyari. "Management of losses (thermalization-transmission) in the Si-QDs inside 3C–SiC to design an ultra-high-efficiency solar cell." Materials Science in Semiconductor Processing 109 (2020): 104936.
23 - Heidarzadeh, Hamid. "Performance analysis of cubic silicon carbide solar cell as an appropriate candidate for high temperature application." Optical and Quantum Electronics 52.4 (2020): 1-11.
22 - Heidarzadeh, Hamid. "Highly sensitive plasmonic sensor based on ring shape nanoparticles for the detection of ethanol and D-glucose concentration." IEEE Transactions on Nanotechnology 19 (2020): 397-404.
21 - Heidarzadeh, Hamid. "Performance analysis of an HJ-IBC silicon solar cell in ultra-high temperatures: possibility of lower reduction efficiency rate." Silicon 12.6 (2020): 1369-1377.
20 - Heidarzadeh, Hamid. "Highly sensitive plasmonic sensor based on ring shape nanoparticles for the detection of ethanol and D-glucose concentration." IEEE Transactions on Nanotechnology 19 (2020): 397-404.
19 - Sobhani, F., H. Heidarzadeh, and H. J. C. P. B. Bahador. "Photocurrent improvement of an ultra-thin silicon solar cell using the localized surface plasmonic effect of clustering nanoparticles." Chinese physics B 29.6 (2020): 068401
18 - Sobhani, Fazil, Hamid Heidarzadeh, and Hamid Bahador. "Efficiency enhancement of an ultra-thin film silicon solar cell using conical-shaped nanoparticles: similar to superposition (top, middle, and bottom)." Optical and Quantum Electronics 52.9 (2020): 1-13.
17 - Bahador, Hamid, and Hamid Heidarzadeh. "Analysis and simulation of a novel localized surface plasmonic highly sensitive refractive index sensor." Plasmonics 15.5 (2020): 1273-1279.
16 - Heidarzadeh, Hamid, and Alireza Tavousi. "Performance enhancement methods of an ultra-thin silicon solar cell using different shapes of back grating and angle of incidence light." Materials Science and Engineering: B 240 (2019): 1-6.
15 - 38- Heidarzadeh, Hamid. "Transition metal-doped 3C-SiC as a promising material for intermediate band solar cells." Optical and Quantum Electronics 51.1 (2019): 1-11.
14 - Heidarzadeh, Hamid. "Incident light management in a thin silicon solar cell using a two-dimensional grating according a Gaussian distribution." Solar Energy 189 (2019): 457-463.
13 - Mokari, Gholamali, and Hamid Heidarzadeh. "Efficiency enhancement of an ultra-thin silicon solar cell using plasmonic coupled core-shell nanoparticles." Plasmonics 14.5 (2019): 1041-1049.
12 - 35- Jangjoy, Abolfazl, Hamid Bahador, and Hamid Heidarzadeh. "Design of an ultra-thin silicon solar cell using localized surface plasmonic effects of embedded paired nanoparticles." Optics Communications 450 (2019): 216-221.
11 - Heidarzadeh, Hamid. "Comprehensive investigation of core-shell dimer nanoparticles size, distance and thicknesses on performance of a hybrid organic-inorganic halide perovskite solar cell." Materials Research Express 5.3 (2018): 036208.
10 - Tavousi, Alireza, and Hamid Heidarzadeh. "Realization of a multichannel drop filter using an ISO-centric all-circular photonic crystal ring resonator." Photonics and Nanostructures-Fundamentals and Applications 31 (2018): 52-59.
9 - Heidarzadeh, Hamid, and Farzaneh Mehrfar. "Effect of size non-uniformity on performance of a plasmonic perovskite solar cell: an array of embedded plasmonic nanoparticles with the Gaussian distribution radiuses." Plasmonics 13.6 (2018): 2305-2312.
8 - Jafari, H., Heidarzadeh, H., Rostami, A., Rostami, G., & Dolatyari, M. (2017). Significant performance enhancement in continuous wave terahertz photomixers based on fractal structures. International Journal of Modern Physics B, 31(3), 1750002.
7 - Heidarzadeh, H., Rostami, A., Dolatyari, M., & Rostami, G. (2016). Plasmon-enhanced performance of an ultrathin silicon solar cell using metal-semiconductor core-shell hemispherical nanoparticles and metallic back grating. Applied optics, 55(7), 1779-1785.
6 - Heidarzadeh, H., Rostami, A., Dolatyari, M., & Rostami, G. (2016). Design criteria for silicon nanostructures in silicon based triple junction solar cell. Optical and Quantum Electronics, 48(11), 1-13.
5 - Jafari, H., Heidarzadeh, H., Rostami, G., Dolatyari, M., & Rostami, A. (2016). Continuous terahertz wave generation based on photomixers coupled to Fibonacci fractal tree antennas. Optical and Quantum Electronics, 48(12), 1-14.
4 - Heidarzadeh, H., Rostami, A., Dolatyari, M., & Rostami, G. (2015). A new proposal for simultaneous multicolor detection based on quantum dots and selective energy contacts. IEEE Transactions on Electron Devices, 62(7), 2231-2237.
3 - Heidarzadeh, H., Baghban, H., Rasooli, H., Dolatyari, M., & Rostami, A. (2014). A new proposal for Si tandem solar cell: significant efficiency enhancement in 3C–SiC/Si. Optik, 125(3), 1292-1296.
2 - Ahmadi, H., Heidarzadeh, H., Taghipour, A., Rostami, A., Baghban, H., Dolatyari, M., & Rostami, G. (2014). Evaluation of single virus detection through optical biosensor based on microsphere resonator. Optik, 125(14), 3599-3602.
1 - Rostami, A., Heidarzadeh, H., Baghban, H., Dolatyari, M., & Rasooli, H. (2013). Thermal stability analysis of concentrating single-junction silicon and SiC-based solar cells. J. Optoelectron. Adv. Mater, 15(1-2), 1-3.
کتاب فارسی
7 - 6-طراحی و شبیه سازی یک سنسور زیستی نوری مبتنی بر نانو حفره¬های پلاسمونیکی
6 - 4- بررسی و بهبود عملکرد یک سلول خورشیدی لایه نازک سیلیکونی با به کاربردن نانو ذرات چند فلزی، دانشگاه محقق اردبیلی
5 - 1-افزایش جریان نوری در سلول های خورشیدی پروسکایت با استفاده از نانوذرات پلاسمونیکی، دانشگاه محقق اردبیلی
مدیر گروه مهندسی برق و کامپیوتر از سال 1401 تا 1404
برنامه هفتگی استاد در ترم جاری
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