Armen Sargsyan
Identifiers
- name variant Armen Sargsyan 0.60 · backfill
Papers (16)
- Observation of Magnetically-Induced atomic transitions of the Cs 6S$_{1/2} \rightarrow 7$P$_{3/2}$ line at 456 nm physics.atom-ph · 2026 · author #1
- Resolution-enhanced quantitative spectroscopy of atomic vapor in optical nanocells based on second-derivative processing of spectra physics.atom-ph · 2019 · author #1
- Dark resonance formation with magnetically-induced transitions: extension of spectral range and giant circular dichroism physics.atom-ph · 2019 · author #1
- Study of EIT resonances in an anti-relaxation coated Rb vapor cell physics.atom-ph · 2018 · author #4
- Hyperfine Paschen-Back regime of Potassium D$_2$ line observed by Doppler-free spectroscopy physics.atom-ph · 2018 · author #1
- Selective reflection from Rb layer with thickness below $\lambda$/12 and applications physics.atom-ph · 2017 · author #1
- Magnetic field--induced modification of selection rules for Rb D$_2$ line monitored by selective reflection from a vapor nanocell physics.atom-ph · 2017 · author #2
- Decoupling of hyperfine structure of Cs $D_1$ line in strong magnetic field studied by selective reflection from a nanocell physics.atom-ph · 2016 · author #1
- Active narrowband filtering, line narrowing and gain using ladder electromagnetically induced transparency in an optically thick atomic vapour physics.atom-ph · 2013 · author #2
- N -resonances in a buffered micrometric Rb cell: splitting in a strong magnetic field physics.atom-ph · 2012 · author #1
- Three-photon electromagnetically induced transparency using Rydberg states physics.atom-ph · 2012 · author #3
- The cooperative Lamb shift in an atomic nanolayer physics.atom-ph · 2012 · author #2
- Optical transmission through a dipolar layer physics.atom-ph · 2011 · author #2
- High contrast D$_{1}$ line electromagnetically induced transparency in nanometric-thin rubidium vapor cell physics.atom-ph · 2011 · author #1
- Effect of buffer gas on electromagnetically induced transparency in a ladder system using thermal rubidium vapor physics.atom-ph · 2010 · author #1
- A method for the quantitative study of atomic transitions in a magnetic field based on an atomic vapor cell with L=lambda physics.atom-ph · 2008 · author #1
Mentions
- 1311.7268 #2 · backfill · confidence 0.70 Armen Sargsyan
- 1207.3955 #1 · backfill · confidence 0.70 Armen Sargsyan
- 1205.2499 #3 · backfill · confidence 0.70 Armen Sargsyan
- 1201.5251 #2 · backfill · confidence 0.70 Armen Sargsyan
- 1109.3669 #2 · backfill · confidence 0.70 Armen Sargsyan
- 1102.3824 #1 · backfill · confidence 0.70 Armen Sargsyan
- 1005.4377 #1 · backfill · confidence 0.70 Armen Sargsyan
- 0805.2539 #1 · backfill · confidence 0.70 Armen Sargsyan
Frequent Coauthors
- David Sarkisyan 15 shared papers
- Aram Papoyan 9 shared papers
- Charles S. Adams 5 shared papers
- Claude Leroy 5 shared papers
- Ara Tonoyan 4 shared papers
- Emmanuel Klinger 4 shared papers
- James Keaveney 4 shared papers
- Grant Hakhumyan 3 shared papers
- Ifan G. Hughes 3 shared papers
- Ulrich Krohn 3 shared papers
- Arevik Amiryan 2 shared papers
- Rafayel Mirzoyan 2 shared papers
- Yevgenya Pashayan-Leroy 2 shared papers
- Aigars Atvars 1 shared papers
- Charles Adams 1 shared papers
- Christopher Carr 1 shared papers
- D Sarkisyan 1 shared papers
- Julia Gontcharov 1 shared papers
- Kevin J. Weatherill 1 shared papers
- Mangesh Bhattarai 1 shared papers