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1. Experimental Investigation of Electromagnetically Induced Transparency in Selective Reflection Spectra

2. Electromagnetically induced transparency with magnetically-induced $\Delta F=0, m_F=0 \rightarrow m_F=0$ probe transition

3. Influence of buffer gas on the formation of $N$-resonances in rubidium vapors

4. Observation of magnetically-induced transition intensity redistribution in the onset of the hyperfine Paschen-Back regime

5. Formation of narrow atomic lines of Rb in the UV region using a magnetic field

6. Formation of strongly shifted EIT resonances using 'forbidden' transitions of Cesium

7. Saturated absorption technique used in Potassium microcell for magnetic field sensing

8. Coherent Optical Processes on Cs D$_2$ line Magnetically Induced Transitions

10. Strongest Magnetically Induced Transitions in Alkali Metal Atoms with nuclear spin $3/2$

12. Circular dichroism in atomic vapors: magnetically induced transitions responsible for two distinct behaviors

13. Features of Magnetically-induced atomic transitions of Rb D$_1$ line studied by Doppler-free method based on the second derivative of the absorption spectra

14. Proof of the feasibility of a nanocell-based wide-range optical magnetometer

15. Resolution-enhanced quantitative spectroscopy of atomic vapor in optical nanocells based on second-derivative processing of spectra

16. Selective reflection from a Potassium atomic layer with a thickness as small as $\lambda /13$

18. Dark resonance formation with magnetically-induced transitions: extension of spectral range and giant circular dichroism

20. Study of EIT resonances in an anti-relaxation coated Rb vapor cell

21. Hyperfine Paschen-Back regime of Potassium D$_2$ line observed by Doppler-free spectroscopy

22. Selective reflection from Rb layer with thickness below $\lambda$/12 and applications

23. Magnetic field--induced modification of selection rules for Rb D$_2$ line monitored by selective reflection from a vapor nanocell

24. Decoupling of hyperfine structure of Cs $D_1$ line in strong magnetic field studied by selective reflection from a nanocell

31. Active narrowband filtering, line narrowing and gain using ladder electromagnetically induced transparency in an optically thick atomic vapour

32. N -resonances in a buffered micrometric Rb cell: splitting in a strong magnetic field

33. Three-photon electromagnetically induced transparency using Rydberg states

34. The cooperative Lamb shift in an atomic nanolayer

35. Optical transmission through a dipolar layer

36. High contrast D$_{1}$ line electromagnetically induced transparency in nanometric-thin rubidium vapor cell

37. Effect of buffer gas on electromagnetically induced transparency in a ladder system using thermal rubidium vapor

38. Structural and biochemical characterisation of the N‐carbamoyl‐β‐alanine amidohydrolase from Rhizobium radiobacterMDC 8606

41. A method for the quantitative study of atomic transitions in a magnetic field based on an atomic vapor cell with L=lambda

43. Structural and biochemical characterisation of the N-Carbamoyl-beta-Alanine Amidohydrolases from Rhizobium radiobacter MDC 8606

45. Derive! Umherschweifen im Ruhrgebiet

50. MODELING, SYNTHESIS AND IN VITRO SCREENING OF UNUSUAL AMINO ACIDS AND PEPTIDES AS PROTEASE INHIBITORS.

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