Janus-faced tomograms and retrieval of quadrature moments for -deformed states
arXiv:2308.01763 · doi:10.1088/1402-4896/ad3687
Abstract
In this work, we derive the optical tomograms of various -deformed quantum states. We found that the optical tomograms of the states under consideration exhibit a fascinating `Janus faced' nature, irrespective of the deformation parameter . We also derived a general method to extract the quadrature moments from the optical tomograms of any -deformed states. We also note that this technique can be used in high-precision experiments to observe deviations from the standard quantum mechanical behavior.
References in corpus (6)
- Towards higher precision and operational use of optical homodyne tomograms
- q-deformed noncommutative cat states and their nonclassical properties
- Time-dependent q-deformed coherent states for generalized uncertainty relations
- Signatures of nonclassical effects in optical tomograms
- Construction of Quantum Target Space from World-Sheet States using Quantum State Tomography
- Nonlinear dynamics of superpostion of wavepackets