
Overview
Availability
- Associate Professor Taras Plakhotnik is:
- Available for supervision
Fields of research
Qualifications
- Doctor of Philosophy, Russian Academy of Sciences
Works
Search Professor Taras Plakhotnik’s works on UQ eSpace
1999
Conference Publication
The distribution of line widths of single probe molecules in a crystalline host at milliKelvin temperatures
Donley, EA, Burzomato, V, Wild, UP and Plakhotnik, T (1999). The distribution of line widths of single probe molecules in a crystalline host at milliKelvin temperatures. 12th International Conference on Dynamical Proceesses in Excited States of Solids (DPC 99), Humacao Puerto Rico, May 23-27, 1999. AMSTERDAM: ELSEVIER SCIENCE BV. doi: 10.1016/S0022-2313(99)00108-8
1999
Conference Publication
Spectral lines of single molecules in a fluctuating environment
Plakhotnik, T (1999). Spectral lines of single molecules in a fluctuating environment. 12th International Conference on Dynamical Proceesses in Excited States of Solids (DPC 99), Humacao Puerto Rico, May 23-27, 1999. AMSTERDAM: ELSEVIER SCIENCE BV. doi: 10.1016/S0022-2313(99)00102-7
1999
Journal Article
Coupling Constant Distribution Measured for Dynamical Interactions between Probe Molecules and an Amorphous Polymer Host
Donley, E. A., Plakhotnik, T., Bach, H. and Wild, U. P. (1999). Coupling Constant Distribution Measured for Dynamical Interactions between Probe Molecules and an Amorphous Polymer Host. Optics and Spectroscopy (English translation of Optika i Spektroskopiya), 87 (4), 616-623.
1999
Conference Publication
Coupling constant distribution measured for dynamical interactions between probe molecules and an amorphous polymer host
Donley, EA, Plakhotnik, T, Bach, H and Wild, UP (1999). Coupling constant distribution measured for dynamical interactions between probe molecules and an amorphous polymer host. VIIth International Seminar on Quantum Optics, Raubichi Byelarus, May, 1999. WASHINGTON: OPTICAL SOC AMER.
1999
Journal Article
Coupling strength distributions for dynamic interactions experienced by probe molecules in a polymer host
Donley, EA, Bach, H, Wild, UP and Plakhotnik, T (1999). Coupling strength distributions for dynamic interactions experienced by probe molecules in a polymer host. Journal of Physical Chemistry a, 103 (14), 2282-2289. doi: 10.1021/jp983653z
1999
Journal Article
Time-dependent single molecule spectral lines
Plakhotnik, T (1999). Time-dependent single molecule spectral lines. Physical Review B, 59 (7), 4658-4660. doi: 10.1103/PhysRevB.59.4658
1999
Conference Publication
One and two photon spectroscopy on single molecules of diphenyloctatetraene
Walser, D., Plakhotnik, T., Renn, A., Zumofen, G. and Wild, U.P. (1999). One and two photon spectroscopy on single molecules of diphenyloctatetraene. National Meeting of the American Chemical Society, United States, 1999. Washington, DC, United States: American Chemical Society.
1998
Journal Article
Time resolved single molecule spectroscopy
Plakhotnik, T and Walser, D (1998). Time resolved single molecule spectroscopy. Physical Review Letters, 80 (18), 4064-4067. doi: 10.1103/PhysRevLett.80.4064
1997
Journal Article
Optical microscopy in the nano-world
Pohl, DW, Bach, H, Bopp, MA, Deckert, V, Descouts, P, Eckert, R, Guntherodt, HJ, Hafner, C, Hecht, B, Heinzelmann, H, Huser, T, Jobin, M, Keller, U, Lacoste, T, Lambelet, P, MarquisWeible, F, Martin, OJF, Meixner, AJ, Nechay, B, Novotny, L, Pfeiffer, M, Philipona, C, Plakhotnik, T, Renn, A, Sayah, A, Segura, JM, Sick, B, Siegner, U, Tarrach, G ... Zenobi, R (1997). Optical microscopy in the nano-world. Chimia, 51 (10), 760-767.
1997
Conference Publication
Single-molecules spectral lines 'erasing' under powerful infrared illumination
Plakhotnik, T, Walser, D, Renn, A and Wild, UP (1997). Single-molecules spectral lines 'erasing' under powerful infrared illumination. 1996 International Conference on luminescence and Optical Spectroscopy of Condensed Matter (ICL 96), Prague Czech Republic, Aug 18-23, 1996. AMSTERDAM: ELSEVIER SCIENCE BV. doi: 10.1016/S0022-2313(96)00358-4
1997
Journal Article
One- and two-photon spectroscopy on single molecules of diphenyloctatetraene
Walser, D, Plakhotnik, T, Renn, A and Wild, UP (1997). One- and two-photon spectroscopy on single molecules of diphenyloctatetraene. Chemical Physics Letters, 270 (1-2), 16-22. doi: 10.1016/S0009-2614(97)00324-2
1997
Conference Publication
Two-photon and one-photon spectroscopy on a single quantum system.
Plakhotnik, T, Walser, D, Renn, A and Wild, UP (1997). Two-photon and one-photon spectroscopy on a single quantum system.. WASHINGTON: AMER CHEMICAL SOC.
1997
Journal Article
Single-molecule spectroscopy
Plakhotnik, T, Donley, EA and Wild, UP (1997). Single-molecule spectroscopy. Annual Review of Physical Chemistry, 48 (1), 181-212. doi: 10.1146/annurev.physchem.48.1.181
1996
Journal Article
Light induced single molecule frequency shift
Plakhotnik, T, Walser, D, Renn, A and Wild, UP (1996). Light induced single molecule frequency shift. Physical Review Letters, 77 (27), 5365-5368. doi: 10.1103/PhysRevLett.77.5365
1996
Journal Article
Two Shpol'skii sites of all-trans-1,8-diphenyloctatetraene in n-tetradecane
Plakhotnik, T, Walser, D, Renn, A and Wild, UP (1996). Two Shpol'skii sites of all-trans-1,8-diphenyloctatetraene in n-tetradecane. Chemical Physics Letters, 262 (3-4), 379-383. doi: 10.1016/0009-2614(96)01063-9
1996
Journal Article
Dephasing and diffusional linewidths in spectra of doped amorphous solids: Comparison of photon echo and single molecule spectroscopy data for terrylene in polyethylene
Vainer, YG, Plakhotnik, TV and Personov, RI (1996). Dephasing and diffusional linewidths in spectra of doped amorphous solids: Comparison of photon echo and single molecule spectroscopy data for terrylene in polyethylene. Chemical Physics, 209 (1), 101-110. doi: 10.1016/0301-0104(96)00109-7
1996
Journal Article
Nonlinear spectroscopy on a single quantum system: Two-photon absorption of a single molecule
Plakhotnik, T, Walser, D, Pirotta, M, Renn, A and Wild, UP (1996). Nonlinear spectroscopy on a single quantum system: Two-photon absorption of a single molecule. Science, 271 (5256), 1703-1705. doi: 10.1126/science.271.5256.1703
1996
Journal Article
On separation of diffusive broadening and homogeneous linewidth in spectrum of single molecule in solids
Plakhotnik, T (1996). On separation of diffusive broadening and homogeneous linewidth in spectrum of single molecule in solids. Optics Communications, 123 (1-3), 105-108. doi: 10.1016/0030-4018(95)00531-5
1995
Journal Article
Detection of single molecules with a scanning near-field optical microscope: Absorption and luminescence
Plakhotnik, TV (1995). Detection of single molecules with a scanning near-field optical microscope: Absorption and luminescence. Optika I Spektroskopiya, 79 (5), 747-755.
1995
Journal Article
Single-Molecule Spectroscopy - Maximum Emission Rate and Saturation Intensity
Plakhotnik, T, Moerner, WE, Palm, V and Wild, UP (1995). Single-Molecule Spectroscopy - Maximum Emission Rate and Saturation Intensity. Optics Communications, 114 (1-2), 83-88. doi: 10.1016/0030-4018(94)00594-K
Funding
Current funding
Supervision
Availability
- Associate Professor Taras Plakhotnik is:
- Available for supervision
Before you email them, read our advice on how to contact a supervisor.
Supervision history
Completed supervision
-
2019
Doctor Philosophy
Applications of Nitrogen-Vacancy Centers in Nanodiamonds for Nanoscale Thermometry and Magnetometry
Principal Advisor
-
2015
Doctor Philosophy
Nitrogen-vacancy centres in diamond: Internal dynamics and nanoscale measurements
Principal Advisor
Other advisors: Emeritus Professor Ross McKenzie
-
2010
Doctor Philosophy
Application of luminescent diamond nanocrystals to intra-cellular optical imaging
Principal Advisor
Other advisors: Professor Aleksandar Rakic
-
2021
Doctor Philosophy
Double-Near-Zero Metamaterials in Transformation Optics and Imaging
Associate Advisor
Other advisors: Dr Timo Nieminen
Media
Enquiries
For media enquiries about Associate Professor Taras Plakhotnik's areas of expertise, story ideas and help finding experts, contact our Media team: