Exceptional Points (EP) by NHQM

Link to Full List Of Publications

FIRST WORK TO ASSOCIATE THE NON-HERMITIAN DEGENRACY (EP) TO THE RESONANCE PHENOMENA

  •  MoiseyevN., and Friedland, S. (1980). Association of resonance states with the incomplete spectrum of finite complex-scaled Hamiltonian matrices, Phys. Rev. A 22(2), 618 doi: View Article

OPENED THE FIELD OF PT IN OPTICS

  • Klaiman, S., Guenther, U., & Moiseyev, (2008). Visualization of branch points in pt-symmetric waveguides. Phys. Rev. Lett., 101(8). doi: View Article

 

FIRST WORK TO INTRODCUE THE ASYMETRIC DYNAMICS WHEN THE PARAMETERS ARE VARIED IN TIME TO ENCIRCLE EP

  • Uzdin, R., Mailybaev, A., & MoiseyevN. (2011). On the observability and asymmetry of adiabatic state flips generated by exceptional points. J. Phys. A-Math. Theor.44(43). View Article
  • Doppler, J., Mailybaev, A. A., Bohm, J., Kuhl, U., Girschik, A., Libisch, F.,   Milburn, T.J., Rabl, P., Moiseyev, N.,  Rotter, S. (2016). Dynamically encircling an exceptional point for asymmetric mode switching. Nature 537(7618), 76–79. doi: View Article   [first experiment,  for illustrating the asymmetric switch ]
  • CHAPTER IN A BOOK: Moiseyev, N., & Mailybaev, A. A. (2018). Effects of Exceptional Points in PT-Symmetric Waveguides. In Parity-time Symmetry and Its Applications (pp. 237-259). Springer, Singapore.

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  • Choi, Y., Choi, Y. S., Song, S. H., Yu, K., Moiseyev, N., Yoon, J. W., A Principle of Non-Hermitian Wave Modulators by Indefinitely Small Physical Controls. Laser Photonics Rev 2023, 2200580. https://doi.org/10.1002/lpor.202200580 View Article

 

  • Guy Elbaz, Adi Pick, Moiseyev, N. and Gal Shmuel. Encircling exceptional points of Bloch waves: mode conversion and anomalous scattering. J. Phys. D: Appl. Phys. 55 235301 (2022); View Article

 

  • MoiseyevN., & Sindelka, M. (2021). Transfer of information through waveguides near an exceptional point. Phys. Rev. A103(3). View Article

 

  • Feilhauer, J., Schumer, A., Doppler, J., Mailybaev, A. A., Bohm, J., Kuhl, U. ,Moiseyev, N., Rotter, S. (2020). Encircling exceptional points as a non-hermitian extension of rapid adiabatic passage. Phys. Rev. A102(4).  View Article

 

  • Ben-Asher, A., Simsa, D., Uhlirov, T., Sindelka, M., & Moiseyev, (2020). Laser control of resonance tunneling via an exceptional point. Phys. Rev. Lett., 124 (25). doi: View Article

 

  • Gal, S., & Moiseyev, N., (2020). Linking scalar elastodynamics and non-hermitian quantum mechanics. Phys. Rev. Appl., 13(2). doi: View Article

 

  • Pick, A., Kaprálová-Žďánská ,PR., & Moiseyev, N. (2019).  Ab-initio theory of photoionization via resonances. J. Chem. Phys. 150, 204111; View Article

 

  • Pick, A., Silberstein, S., Moiseyev, N., & Bar-gill, N. (2019). Robust mode conversion in nv centers using exceptional points. Phys. Rev. Res.1(1). View Article

 

  • Berman, M., & MoiseyevN. (2018). Exceptional points in the riesz-feller hamiltonian with an impenetrable rectangular potential. Phys. Rev. A98(4). doi: View Article

 

  • Goldzak, T., Mailybaev, A. A., & MoiseyevN. (2018). Light stops at exceptional points. Phys. Rev. Lett.120(1). doi: View Article

 

  • Sindelka, M., Santos, L. F., & MoiseyevN. (2017). Excited-state quantum phase transitions studied from a non-hermitian perspective. Phys. Rev. A95(1) View Article

 

  • Tripolt, R.-A., Haritan, I., Wambach, J., & Moiseyev, N. (2017). Threshold energies and poles for hadron physical problems by a model-independent universal algorithm.  Phys. Lett. B774, 411–416. doi: View Article

 

  • Am-shallem, M., Kosloff, R., & Moiseyev, (2016). Parameter estimation in atomic spectroscopy using exceptional points. Phys. Rev. A, 93(3). doi: View Article

 

  • Am-shallem, M., Kosloff, R., & MoiseyevN. (2015). Exceptional points for parameter estimation in open quantum systems: Analysis of the bloch equations. New J. Phys.17. doi: View Article

 

  • Haritan, I., Gilary, I., Amitay, Z., & Moiseyev, N., (2015). Characteristic footprints of an exceptional point in the dynamics of li dimer under a laser field. J. Chem. Phys., 143(15). doi: View Article

 

  • Kapralova-Zdanska, P. R., & Moiseyev, N.,(2014). Helium in chirped laser fields as a time-asymmetric atomic switch. J. Chem. Phys., 141(1). doi: View Article

 

  • Lee, T. E., Reiter, F., & Moiseyev, N.  (2014). Entanglement and spin squeezing in non-hermitian phase transitions.  Phys. Rev. Lett., 113(25). doi:View Article

 

  • MoiseyevN. (2013). Sudden transition from a stable to an unstable harmonic trap as the adiabatic potential parameter is varied in a time-periodic harmonic trap. Phys. Rev. A88(3).  View Article

 

  • Gilary, I., Mailybaev, A. A., & Moiseyev, (2013). Time-asymmetric quantum-state-exchange mechanism. Phys. Rev. A, 88(1). doi: View Article

 

  • Graefe, E.-m., Mailybaev, A. A., & Moiseyev, (2013). Breakdown of adiabatic transfer of light in waveguides in the presence of absorption. Phys. Rev. A, 88(3). doi: View Article

 

  • Uzdin, R., Dalla Torre, E. G., Kosloff, R., & MoiseyevN. (2013) Effects of an exceptional point on the dynamics of a single particle in a time-dependent harmonic trap, Phys. Rev. A 88, 022505 View Article

 

  • Gilary, I., & Moiseyev, (2012). Asymmetric effect of slowly varying chirped laser pulses on the adiabatic state exchange of a molecule. J. Phys. B-At. Mol. Opt. Phys., 45(5). doi: View Article

 

  • Uzdin, R., & MoiseyevN. (2012). Scattering from a waveguide by cycling a non-hermitian degeneracy. Phys. Rev. A85(3). View Article

 

  • Uzdin, R., Guenther, U., Rahav, S., & Moiseyev, N. (2012). Time-dependent hamiltonians with 100% evolution speed efficiency.  J. Phys. A-Math. Theor., 45(41). doi: View Article

 

  • Uzdin, R., & Moiseyev, (2012). Rapid azimuthal rotation in the hermitian and non-hermitian landau-zener problem. J. Phys. A-Math. Theor., 45(44, SI). doi: View Article

 

  •  Alfassi, B., Peleg, o., MoiseyevN., & Segev, M. (2011). Diverging rabi oscillations in subwavelength photonic lattices. Phys. Rev. Lett.106(7). doi: View Article

 

  • Cartarius, H., & MoiseyevN. (2011). Fingerprints of exceptional points in the survival probability of resonances in atomic spectra. Phys. Rev. A84(1).doi: View Article

 

  • Lefebvre, R., & Moiseyev, N. (2010). Localization of exceptional points with pade approximants. J. Phys. B-At. Mol. Opt. Phys.43(9). View Article

 

  • Lefebvre, R., Atabek, O., Sindelka, M., & Moiseyev, N. (2009). Resonance coalescence in molecular photodissociation. Phys. Rev. Lett.103(12). View Article