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Aleksa Krstić
Aleksa Krstić
Institute of Applied Physics, Abbe Center of Photonics, Friedrich Schiller University Jena
Verified email at uni-jena.de
Title
Cited by
Cited by
Year
Nonperturbative theory of spontaneous parametric down-conversion in open and dispersive optical systems
A Krstić, F Setzpfandt, S Saravi
Physical Review Research 5 (4), 043228, 2023
32023
Enhancing entangled two-photon absorption of Nile Red via temperature-controlled SPDC
A Krstić, TB Gäbler, N Jain, P Then, VF Gili, S Saravi, F Setzpfandt, ...
APL Quantum 2 (1), 2025
12025
Towards optimized photon-pair sources for two-photon transitions
A Krstić, S Saravi, M Gräfe, T Pertsch, F Setzpfandt
2019 Conference on Lasers and Electro-Optics Europe & European Quantum …, 2019
12019
Hybrid Source of Quantum Light for Generation of Frequency Tunable Fock States
A Krstić, P Tiwari, F Höhe, F Setzpfandt, U Peschel, J Ankerhold, S Saravi
Physical Review Letters 133 (20), 203605, 2024
2024
Optimization of Entangled Two-Photon Absorption Experiments based on Semi-Empirical Approach with Accessible Chemical Properties of Fluorescence Dyes
TB Gäbler, A Krstić, N Jain, VF Gili, S Saravi, F Setzpfandt, M Gräfe
Quantum 2.0, QTu3A. 46, 2024
2024
Atom-mediated Nonlinear Sources of Quantum Light
A Krstić, P Tiwari, F Setzpfandt, U Peschel, S Saravi
2023 Conference on Lasers and Electro-Optics Europe & European Quantum …, 2023
2023
Hybrid Sources of Quantum Light Based on Atom-mediated Nonlinear Optical Interactions
A Krstić, P Tiwari, F Setzpfandt, U Peschel, S Saravi
Quantum 2.0, QW2A. 10, 2023
2023
High-gain Spontaneous Parametric Down-conversion in Dispersive and Absorbing Nanostructured Systems
A Krstić, F Setzpfandt, T Pertsch, S Saravi
Specialty Optical Fibers, JTu2A. 7, 2022
2022
A General Formalism for Describing High-gain Photon-pair Generation in Dispersive and Absorbing Nanostructured Systems
A Krstić, F Setzpfandt, T Pertsch, S Saravi
Quantum 2.0, QW2A. 35, 2022
2022
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