Brillouin light scattering microscopy and spectroscopy (BRILLOUIN)
Guarantor:
Michal Urbánek, Ph.D.
Instrument status:
Operational, 8.8.2025 14:41
The TFP-2 spectrometer is based on a tandem 3+3 pass Fabry-Perot interferometer arrangement. The instrument is intended primarily for the study of Brillouin spectra, particularly of many, or broad, features over an extended spectral range. The flexibility is such that even Raman spectra (out to about 500 cm-1) may be measured. The construction allows a change of mirror spacing with a minor loss of alignment, so that full alignment may be achieved again within seconds.
Publications:
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ZENBAA, N.; LEVCHENKO, K.; PANDA, J.; DAVÍDKOVÁ, K.; RUHWEDEL, M.; KNAUER, S.; LINDNER, M.; DUBS, C.; WANG, Q.; URBÁNEK, M.; PIRRO, P.; CHUMAK, A., 2025: YIG/CoFeB Bilayer Magnonic Isolator. IEEE MAGNETICS LETTERS 16, p. 1 - 5, doi: 10.1109/LMAG.2025.3551990; FULL TEXT
(VNA-MPI, BRILLOUIN, MIRA-EBL, EVAPORATOR, RAITH) -
KRČMA, J.; WOJEWODA, O.; HRTOŇ, M.; HOLOBRÁDEK, J.; ARREGI URIBEETXEBARRIA, J.; PANDA, J.; PRIBYTOVA, E.; URBÁNEK, M., 2025: Mie-enhanced microfocused Brillouin light scattering for full wave vector resolution of nanoscale spin waves. SCIENCE ADVANCES 11(44), p. 1 - 9, doi: 10.1126/sciadv.ady8833; FULL TEXT
(BRILLOUIN, EVAPORATOR, RAITH, RIGAKU9) -
LEVCHENKO, K.; DAVIDKOVA, K.; SERHA, R.; MOALIC, M.; VORONOV, A.; DUBS, C.; SURZHENKO, O.; LINDNER, M.; PANDA, J.; WANG, Q.; WOJEWODA, O.; HEINZ, B.; URBÁNEK, M.; KRAWCZYK, M.; CHUMAK, A., 2025: 1D YIG hole-based magnonic nanocrystal. APPLIED PHYSICS LETTERS 127, p. 1 - 6, doi: 10.1063/5.0285098; FULL TEXT
(BRILLOUIN) -
KESHMIRI, H.; URBÁNEK, M.; CIKES, D.; ŠÁMALOVÁ, M.; SCHINDLER, L.; APPEL, L.; YUDUSHKIN, I.; SLADE, D.; WENINGER, W.; PEAUCELLE, A.; PENNINGER, J.; ELSAYAD, K., 2024: . NATURE PHOTONICS 18(3), p. 276 - 10, doi: 10.1038/s41566-023-01368-w; FULL TEXT
(BRILLOUIN) -
KLÍMA, J.; WOJEWODA, O.; ROUČKA, V.; MOLNÁR, T.; HOLOBRÁDEK, J.; URBÁNEK, M., 2024: . APPLIED PHYSICS LETTERS 124(11), doi: 10.1063/5.0189394; FULL TEXT
(BRILLOUIN, EVAPORATOR, LYRA, KERR-MICROSCOPE, RAITH, ICON-SPM)
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Krčma, J., 2024: . BACHELOR'S THESIS ; FULL TEXT
(EVAPORATOR, RAITH, RIE-FLUORINE, KAUFMAN, BRILLOUIN, VERIOS) -
WOJEWODA, O.; HOLOBRÁDEK, J.; PAVELKA, D.; PRIBYTOVA, E.; KRČMA, J.; KLÍMA, J.; PANDA, J.; MICHALIČKA, J.; LEDNICKÝ, T.; CHUMAK, A.; URBÁNEK, M., 2024: . APPLIED PHYSICS LETTERS 125(13), p. 1 - 6, doi: 10.1063/5.0218478; FULL TEXT
(TITAN, BRILLOUIN, KERR-MICROSCOPE, MAGNETRON, EVAPORATOR, RAITH, VERSALAB) -
WOJEWODA, O.; HRTOŇ, M.; URBÁNEK, M., 2024: . PHYSICAL REVIEW B 110(22), doi: 10.1103/PhysRevB.110.224428; FULL TEXT
(BRILLOUIN) -
WOJEWODA, O.; LIGMAJER, F.; HRTOŇ, M.; KLÍMA, J.; DHANKHAR, M.; DAVÍDKOVÁ, K.; STAŇO, M.; HOLOBRÁDEK, J.; KRČMA, J.; ZLÁMAL, J.; ŠIKOLA, T.; URBÁNEK, M., 2023: . COMMUNICATIONS PHYSICS 6(1), p. 1 - 10, doi: 10.1038/s42005-023-01214-z; FULL TEXT
(RAITH, MIRA-EBL, EVAPORATOR, MAGNETRON, ALD-FIJI, LYRA, ICON-SPM, BRILLOUIN) -
WOJEWODA, O.; HRTOŇ, M.; DHANKHAR, M.; KRČMA, J.; DAVÍDKOVÁ, K.; KLÍMA, J.; HOLOBRÁDEK, J.; LIGMAJER, F.; ŠIKOLA, T.; URBÁNEK, M., 2023: . APPLIED PHYSICS LETTERS 122(20), p. 1 - 6, doi: 10.1063/5.0151338; FULL TEXT
(RAITH, BRILLOUIN, LYRA, MAGNETRON, EVAPORATOR) -
KNAUER, S.; DAVÍDKOVÁ, K.; SCHMOLL, D.; SERHA, R.; VORONOV, A.; WANG, Q.; VERBA, R.; DOBROVOLSKIY, O.; LINDNER, M.; REIMANN, T.; DUBS, C.; URBÁNEK, M.; CHUMAK, A., 2023: . JOURNAL OF APPLIED PHYSICS 133(14), p. 1 - 8, doi: 10.1063/5.0137437; FULL TEXT
(RAITH, RIE-FLUORINE, SCIA, BRILLOUIN, EVAPORATOR, VNA-MPI) -
Klíma, J., 2023: . BACHELOR'S THESIS , p. 1 - 69; FULL TEXT
(MIRA-EBL, LYRA, ICON-SPM, KERR-MICROSCOPE, BRILLOUIN, EVAPORATOR) -
LAMB-CAMARENA, S.; PORRATI, F.; KUPRAVA, A.; WANG, Q.; URBÁNEK, M.; BARTH, S.; MAKAROV, D.; HUTH, M.; DOBROVOLSKIY, O., 2023: . NANOMATERIALS 13(13), doi: 10.3390/nano13131926; FULL TEXT
(MIRA-EBL, EVAPORATOR, BRILLOUIN) -
FLAJŠMAN, L.; WOJEWODA, O.; QIN, H.; DAVÍDKOVÁ, K.; URBÁNEK, M.; VAN DIJKEN, S., 2022: . APPLIED PHYSICS LETTERS 121(23), doi: 10.1063/5.0124764; FULL TEXT
(BRILLOUIN, RAITH, EVAPORATOR) -
Turčan, I., 2022: . PH.D. THESIS , p. 1 - 117; FULL TEXT
(LYRA, BRILLOUIN, ICON-SPM, MIRA-EBL, KERR-MICROSCOPE, HELIOS) -
Vaňatka, M., 2021: . PH.D. THESIS , p. 1 - 113; FULL TEXT
(VERSALAB, VNA-MPI, TITAN, BRILLOUIN, MIRA-EBL, RAITH, KERR-MICROSCOPE, MAGNETRON, EVAPORATOR, VERIOS, WIRE-BONDER, LYRA) -
TURČAN, I.; FLAJŠMAN, L.; WOJEWODA, O.; ROUČKA, V.; MAN, O.; URBÁNEK, M., 2021: . APPLIED PHYSICS LETTERS 118(9), p. 1 - 5, doi: 10.1063/5.0041138; FULL TEXT
(HELIOS, RAITH, KERR-MICROSCOPE, VERSALAB, VNA-MPI, BRILLOUIN, LYRA, ICON-SPM) -
VAŇATKA, M.; SZULC, K.; WOJEWODA, O.; DUBS, C.; CHUMAK, A.; KRAWCZYK, M.; DOBROVOLSKIY, O.; KLOS, J.; URBÁNEK, M., 2021: . PHYSICAL REVIEW APPLIED 16(5), p. 054033-1 - 10, doi: 10.1103/PhysRevApplied.16.054033; FULL TEXT
(VNA-MPI, BRILLOUIN, RAITH, EVAPORATOR, MAGNETRON, DIENER, VERIOS, RIE-FLUORINE) -
Wojewoda, O.; Hula, T.; Flajsman, L.; Vanatka, M.; Gloss, J.; Holobradek, J.; Stano, M.; Stienen, S.; Korber, L.; Schultheiss, K.; Schmid, M.; Schultheiss, H.; Urbanek, M , 2020: . APPLIED PHYSICS LETTERS 117(2), p. 022405-1 - 5, doi: 10.1063/5.0013692; FULL TEXT
(EVAPORATOR, KERR-MICROSCOPE, BRILLOUIN, MIRA-EBL, LYRA, ICON-SPM) -
Hache, T.; Vanatka, M.; Flajsman, L.; Weinhold, T.; Hula, T.; Ciubotariu, O.; Albrecht, M.; Arkook, B.; Barsukov, I.; Fallarino, L.; Hellwig, O.; Fassbender, J.; Urbanek, M.; Schultheiss, H., 2020: . PHYSICAL REVIEW APPLIED 13(5), p. 054009-1 - 10, doi: 10.1103/PhysRevApplied.13.054009; FULL TEXT
(RAITH, RIE-FLUORINE, EVAPORATOR, WIRE-BONDER, BRILLOUIN) -
Flajšman, L., 2020: . PH.D. THESIS , p. 1 - 152; FULL TEXT
(KERR-MICROSCOPE, BRILLOUIN, LYRA) -
Wojewoda, O., 2020: . MASTER'S THESIS ; FULL TEXT
(BRILLOUIN, EVAPORATOR, MIRA-EBL, KERR-MICROSCOPE, LYRA, ICON-SPM)
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