collaborators

7 papers

quant-ph2026

Engineering Near-Infrared Two-Level Systems in Confined Alkali Vapors

Gilad Orr, Golan Ben-Ari, Eliran Talker

We combined experimental and theoretical investigations of an effective two-level atomic system operating in the near-infrared telecom wavelength regime, realized using hot rubidiu…

quant-ph2026

Ultra Compact low cost two mode squeezed light source

Shahar Monsa, Shmuel Sternklar, Eliran Talker

Quantum-correlated states of light, such as squeezed states, constitute a fundamental resource for quantum technologies, enabling enhanced performance in quantum metrology, quantum…

quant-ph2025

Cavity-Free -Type Coherent Population Trapping for Microwave Sensing

Ido Fridman, Shemuel Sternklar, Eliran Talker

We investigated experimentally and theoretically a cavity-free microwave field that couples the two ground states of a Λ-type atomic system, thereby forming a closed Δ configurat…

physics.optics2025

Beyond Maxwell-Boltzmann statistics using confined vapor cells

Gilad Orr, Eliran Talker

Coherence time of thermal photons in rubidium vapor cells with varying thicknesses, reveal that there is clear dependence of the photon correlation time on cell thickness. Standard…

physics.optics2025

Detuning Tunable OAM Generation via Double- Four-Wave Mixing in Hot Rubidium Vapor

Shahar Monsa, Michael Shulinder, Shmuel Sternklar +1

We demonstrate detuning-tunable generation of orbital-angular-momentum (OAM) light using a double Lambda four-wave-mixing (FWM) process in Doppler broadened rubidium vapor. Two nea…

physics.optics2025

Vacuum squeezing enhanced micrometer scale vapor cell magnetometer

Shahar Monsa, Yair Chasid, Michael Shuldiner +2

We report on an optical magnetometer enhanced by vacuum-squeezed light, employing an Mx magnetometer based on Rb vapor in a micrometer-scale cell (~100 m). Using the wel…