Старший научный сотрудник лаборатории нанооптики и плазмоники МФТИ
Родилась и выросла в Москве, Россия. Мария Г. Бурданова получила степень доктора философии по физике в Университете Уорика, Англия, а также степени магистра и бакалавра по физике в Московском государственном техническом университете им. Н. Э. Баумана, Россия. В настоящее время она является старшим научным сотрудником Московского центра перспективных исследований. Ее научные интересы сосредоточены на оптических и терагерцовых свойствах углеродных нанотрубок, гетеронанотрубок, гибридных наноматериалов и их оптоэлектронных приложениях.
Область научных интересов
Физика конденсированного состояния
Фотоника, оптоэлектроника
Оптическая спектроскопия
Сверхбыстрая спектроскопия
Накачка-зондовая спектроскопия
ТГц-спектроскопия
Преподавание
2021 г. по настоящее время
2021 г. по настоящее время
Ассистент кафедры «Общая физика», МФТИ, Москва, Россия Лабораторные работы (студенты 1 курса).
2021-2022 г.
2021-2022 г.
Ассистент кафедры и старший преподаватель кафедры «Теоретическая физика», Московский педагогический государственный университет, Москва, Россия.
2016-2020 г.
2016-2020 г.
Лабораторные работы (студенты 1 курса), эксперименты по рассеянию рентгеновских лучей, электронике и электротехнике. Университет Уорика, Ковентри, Великобритания.
2014-2016 г.
2014-2016 г.
Ассистент кафедры «Физика». Лабораторные работы (студенты 1 и 2 курса): Классическая механика, Квантовая механика. Семинары/практикумы: Квантовая механика, МГТУ им. Н. Э. Баумана, Москва, Россия.
Последние публикации
Мои научные исследования сосредоточены на терагерцовой спектроскопии новых наноматериалов и их применении в терагерцовых технологиях. Я являюсь частью группы Нанооптики и плазмоники. Пожалуйста, ознакомьтесь со списком наших последних публикаций для получения более подробной информации о моих исследованиях.
@article{voronin2024programmable, title={Programmable Carbon Nanotube Networks: Controlling Optical Properties Through Orientation and Interaction}, author={Voronin, Kirill V and Ermolaev, Georgy A and Burdanova, Maria G and Slavich, Aleksandr S and Toksumakov, Adilet N and Yakubovsky, Dmitry I and Paukov, Maksim I and Xie, Ying and Qian, Liu and Kopylova, Daria S and others}, journal={Advanced Science}, volume={11}, number={36}, pages={2404694}, year={2024}, publisher={Wiley Online Library} }
Exploring Stable Hot Carrier Multiplication in Filled Carbon Nanotubes
@article{paukov2024exploring, title={Exploring stable hot carrier multiplication in filled carbon nanotubes}, author={Paukov, Maksim I and Sun, Shuang and Vorfolomeeva, Anna A and Syuy, Alexander V and Romanov, Roman I and Mironov, Mikhail S and Vyshnevyy, Andrey A and Komandin, Gennadiy A and Bulusheva, Lyubov G and Okotrub, Alexander V and others}, journal={Carbon}, volume={230}, pages={119580}, year={2024}, publisher={Elsevier} }
Sapphire THz waveguides for sensing and endoscopy applications
@inproceedings{katyba2024sapphire, title={Sapphire THz waveguides for sensing and endoscopy applications}, author={Katyba, GM and Lebedev, SP and Kucheryavenko, AS and Dolganova, IN and Kaledin, AV and Zotov, AK and Burdanova, MG and Zaytsev, KI and Kurlov, VN}, booktitle={2024 International Conference Laser Optics (ICLO)}, pages={551--551}, year={2024}, organization={IEEE} }
Terahertz refractometry of hard-to-access objects using the sapphire endoscope suitable for harsh environments
@article{katyba2024terahertz, title={Terahertz refractometry of hard-to-access objects using the sapphire endoscope suitable for harsh environments}, author={Katyba, Gleb M and Lebedev, Sergey P and Kucheryavenko, Anna S and Dolganova, Irina N and Chernomyrdin, Nikita V and Burdanova, Maria G and Spektor, Igor E and Skorobogatiy, Maksim and Kurlov, Vladimir N and Zaytsev, Kirill I}, journal={Applied Physics Letters}, volume={124}, number={24}, year={2024}, publisher={AIP Publishing} }
Study of the Oxygen Defects Influence on Optoelectronic Properties of Single-Walled Carbon Nanotubes
@inproceedings{paukov2024study, title={Study of the Oxygen Defects Influence on Optoelectronic Properties of Single-Walled Carbon Nanotubes}, author={Paukov, MI and Chiglintsev, EO and Krasnikov, DV and Komandin, GA and Gavdush, AA and Brekhov, KA and Chernov, AI and Nasibulin, AG and Zaitsev, KI and Arsenin, AV and others}, booktitle={2024 International Conference Laser Optics (ICLO)}, pages={403--403}, year={2024}, organization={IEEE} }
Enhancing the capabilities of generating THz vortices by utilizing advanced spiral zone plates based on carbon nanotubes
@inproceedings{radivon2024enhancing, title={Enhancing the capabilities of generating THz vortices by utilizing advanced spiral zone plates based on carbon nanotubes}, author={Radivon, AV and Katyba, GM and Raginov, NI and Chernykh, AV and Ezerskii, AS and Tsiplakova, EG and Rakov, II and Paukov, MI and Starchenko, VV and Arsenin, AV and others}, booktitle={2024 International Conference Laser Optics (ICLO)}, pages={407--407}, year={2024}, organization={IEEE} }
Expanding THz Vortex Generation Functionality with Advanced Spiral Zone Plates Based on Single-Walled Carbon Nanotube Films
@article{radivon2024expanding, title={Expanding THz Vortex Generation Functionality with Advanced Spiral Zone Plates Based on Single-Walled Carbon Nanotube Films}, author={Radivon, Arina V and Katyba, Gleb M and Raginov, Nikita I and Chernykh, Aleksey V and Ezerskii, Aleksei S and Tsiplakova, Elizaveta G and Rakov, Ignat I and Paukov, Maksim I and Starchenko, Vladimir V and Arsenin, Aleksey V and others}, journal={Advanced Optical Materials}, volume={12}, number={17}, pages={2303282}, year={2024}, publisher={Wiley Online Library} }
Photodetection performance of TiS₃ nanoribbons studied by optical pump — terahertz probe spectroscopy
@article{paukov2024photodetection, title={Photodetection performance of TiS 3 nanoribbons studied by optical pump: terahertz probe spectroscopy}, author={Paukov, MI and Bulgakova, VV and Goncharov, YG and Mishra, P and Ushakov, AA and Syuy, AV and Arsenin, AA and Volkov, V and Zaytsev, KI and Garnov, SV and others}, journal={Optical Materials Express}, volume={14}, number={3}, pages={759--766}, year={2024}, publisher={Optica Publishing Group} }
Ultrafast dynamics of excitons and charge carriers in Van der Waals WS2 nanotubes
@article{paukov2024ultrafast, title={Ultrafast dynamics of excitons and charge carriers in Van der Waals WS2 nanotubes}, author={Paukov, MI and Starchenko, VV and Melnikov, AA and Komandin, GA and Goldt, AE and Yakubovsky, DI and Syuy, AV and Mishra, P and Zaytsev, KI and Garnov, SV and others}, journal={Materials Today Chemistry}, volume={36}, pages={101886}, year={2024}, publisher={Elsevier} }
Ultrafast THz spectroscopy of carbon nanotube-graphene composites
@article{burdanova2023ultrafast, title={Ultrafast THz spectroscopy of carbon nanotube-graphene composites}, author={Burdanova, Maria G and Tsapenko, Alexey P and Ahmad, Saeed and Kauppinen, Esko I and Lloyd-Hughes, James}, journal={Nanotechnology}, volume={34}, number={40}, pages={405203}, year={2023}, publisher={IOP Publishing} }
Functionalized Fullerenes and Their Applications in Electrochemistry, Solar Cells, and Nanoelectronics
@article{paukov2023functionalized, title={Functionalized fullerenes and their applications in electrochemistry, solar cells, and nanoelectronics}, author={Paukov, Maksim and Kramberger, Christian and Begichev, Ilia and Kharlamova, Marianna and Burdanova, Maria}, journal={Materials}, volume={16}, number={3}, pages={1276}, year={2023}, publisher={MDPI} }
Tunable THz flat zone plate based on stretchable single-walled carbon nanotube thin film
@article{katyba2023tunable, title={Tunable THz flat zone plate based on stretchable single-walled carbon nanotube thin film}, author={Katyba, Gleb M and Raginov, Nikita I and Khabushev, Eldar M and Zhelnov, Vladislav A and Gorodetsky, Andrei and Ghazaryan, Davit A and Mironov, Mikhail S and Krasnikov, Dmitriy V and Gladush, Yuri G and Lloyd-Hughes, James and others}, journal={Optica}, volume={10}, number={1}, pages={53--61}, year={2023}, publisher={Optica Publishing Group} }
Ultrafast opto-mechanical terahertz modulators based on stretchable carbon nanotube thin films
@article{paukov2023ultrafast, title={Ultrafast optomechanical terahertz modulators based on stretchable carbon nanotube thin films}, author={Paukov, Maksim I and Starchenko, Vladimir V and Krasnikov, Dmitry V and Komandin, Gennady A and Gladush, Yuriy G and Zhukov, Sergey S and Gorshunov, Boris P and Nasibulin, Albert G and Arsenin, Aleksey V and Volkov, Valentyn S and others}, journal={Ultrafast Science}, volume={3}, pages={0021}, year={2023}, publisher={AAAS} }
Nanotube Functionalization: Investigation, Methods and Demonstrated Applications
@misc{kharlamova2022nanotube, title={Nanotube Functionalization: Investigation, Methods and Demonstrated Applications. Materials 2022, 15, 5386}, author={Kharlamova, MV and Paukov, M and Burdanova, MG}, year={2022}, publisher={s Note: MDPI stays neutral with regard to jurisdictional claims in published~…} }
Broadband Optical and Terahertz Properties of Atomically Thin 1D van der Waals Heterostructures
@article{burdanova2022broadband, title={Broadband Optical and Terahertz Properties of Atomically Thin 1D van der Waals Heterostructures}, author={Burdanova, Maria and Zheng, Yongjia and Paukov, Maksim and Toksumakov, Adilet and Ermolaev, Georgy and Tatmyshevskiy, Mikhail and Komandin, Gennady and Ghazaryan, Davit and Romanov, Roman and Novikov, Sergey and others}, year={2022}, publisher={MDPI} }
Comparison of Optoelectronic Properties of Doped and Pristine Nanotubes Based on Carbon and Tungsten Disulfide
@article{paukov2022comparison, title={Comparison of Optoelectronic Properties of Doped and Pristine Nanotubes Based on Carbon and Tungsten Disulfide}, author={Paukov, Maxim I and Goldt, Anastasia E and Komandin, Gennadiy A and Syuy, Alexander V and Yakubovskiy, Dmitry I and Novikov, Sergei and Tenne, Reshef and Zak, Alla and Nasibulin, Albert G and Arsenin, Alexey V and others}, journal={Materials Proceedings}, volume={9}, number={1}, pages={28}, year={2022}, publisher={MDPI} }
Intertube Excitonic Coupling in Nanotube Van der Waals Heterostructures
@article{burdanova2022intertube, title={Intertube excitonic coupling in nanotube van der Waals heterostructures}, author={Burdanova, Maria G and Liu, Ming and Staniforth, Michael and Zheng, Yongjia and Xiang, Rong and Chiashi, Shohei and Anisimov, Anton and Kauppinen, Esko I and Maruyama, Shigeo and Lloyd-Hughes, James}, journal={Advanced Functional Materials}, volume={32}, number={11}, pages={2104969}, year={2022}, publisher={Wiley Online Library} }
Fundamental and practical properties of stretchable carbon nanotubes under ultrafast pump-probe spectroscopy
@inproceedings{paukov2022fundamental, title={Fundamental and practical properties of stretchable carbon nanotubes under ultrafast pump-probe spectroscopy}, author={Paukov, M and Goldt, A and Nasibulin, A and Lloyd-Hughes, James and Arsenin, A and Volkov, V and Burdanova, M}, booktitle={Сборник трудов конференции {\guillemotleft}International Conference on Advanced Laser Technologies (ALT){\guillemotright}}, number={22}, pages={223--223}, year={2022}, organization={Федеральное государственное бюджетное учреждение науки Федеральный~…} }
Synthesis, Sorting, and Applications of Single-Chirality Single-Walled Carbon Nanotubes
@article{kharlamova2022synthesis, title={Synthesis, sorting, and applications of single-chirality single-walled carbon nanotubes}, author={Kharlamova, Marianna V and Burdanova, Maria G and Paukov, Maksim I and Kramberger, Christian}, journal={Materials}, volume={15}, number={17}, pages={5898}, year={2022}, publisher={MDPI} }
Ultrafast pump-probe spectroscopy of 1D van der Waals heterostructures
@inproceedings{burdanova2022ultrafast, title={Ultrafast pump-probe spectroscopy of 1D van der Waals heterostructures}, author={Burdanova, M and Lloyd-Hughes, James}, booktitle={Сборник трудов конференции {\guillemotleft}International Conference on Advanced Laser Technologies (ALT){\guillemotright}}, number={22}, pages={216--216}, year={2022}, organization={Федеральное государственное бюджетное учреждение науки Федеральный~…} }
Applications of Pristine and Functionalized Carbon Nanotubes, Graphene, and Graphene Nanoribbons in Biomedicine
@article{burdanova2021applications, title={Applications of pristine and functionalized carbon nanotubes, graphene, and graphene nanoribbons in biomedicine}, author={Burdanova, Maria G and Kharlamova, Marianna V and Kramberger, Christian and Nikitin, Maxim P}, journal={Nanomaterials}, volume={11}, number={11}, pages={3020}, year={2021}, publisher={MDPI} }
A Review of the Terahertz Conductivity and Photoconductivity of Carbon Nanotubes and Heteronanotubes
@article{burdanova2021review, title={A review of the terahertz conductivity and photoconductivity of carbon nanotubes and heteronanotubes}, author={Burdanova, Maria G and Tsapenko, Alexey P and Kharlamova, Marianna V and Kauppinen, Esko I and Gorshunov, Boris P and Kono, Junichiro and Lloyd-Hughes, James}, journal={Advanced Optical Materials}, volume={9}, number={24}, pages={2101042}, year={2021}, publisher={Wiley Online Library} }
Linear and helical cesium iodide atomic chains in ultranarrow single-walled carbon nanotubes: impact on optical properties
@article{kashtiban2021linear, title={Linear and helical cesium iodide atomic chains in ultranarrow single-walled carbon nanotubes: Impact on optical properties}, author={Kashtiban, Reza J and Burdanova, Maria G and Vasylenko, Andrij and Wynn, Jamie and Medeiros, Paulo VC and Ramasse, Quentin and Morris, Andrew J and Quigley, David and Lloyd-Hughes, James and Sloan, Jeremy}, journal={ACS nano}, volume={15}, number={8}, pages={13389--13398}, year={2021}, publisher={ACS Publications} }
The 2021 ultrafast spectroscopic probes of condensed matter roadmap
@article{lloyd20212021, title={The 2021 ultrafast spectroscopic probes of condensed matter roadmap}, author={Lloyd-Hughes, James and Oppeneer, Peter M and Dos Santos, T Pereira and Schleife, Andre and Meng, Sheng and Sentef, Michael A and Ruggenthaler, Michael and Rubio, Angel and Radu, Ilie and Murnane, Margaret and others}, journal={Journal of Physics: Condensed Matter}, volume={33}, number={35}, pages={353001}, year={2021}, publisher={IOP Publishing} }
Ultrafast, high modulation depth terahertz modulators based on carbon nanotube thin films
@article{burdanova2021ultrafast, title={Ultrafast, high modulation depth terahertz modulators based on carbon nanotube thin films}, author={Burdanova, Maria G and Katyba, Gleb M and Kashtiban, Reza and Komandin, Gennady A and Butler-Caddle, Edward and Staniforth, Michael and Mkrtchyan, Aram A and Krasnikov, Dmitry V and Gladush, Yuriy G and Sloan, Jeremy and others}, journal={Carbon}, volume={173}, pages={245--252}, year={2021}, publisher={Elsevier} }