Magneto-optical induced supermode switching in quantum fluids of light

被引:1
作者
Furman, Magdalena [1 ]
Mirek, Rafal [1 ]
Krol, Mateusz [1 ]
Pacuski, Wojciech [1 ]
Sigurosson, Helgi [1 ,2 ]
Szczytko, Jacek [1 ]
Pietka, Barbara [1 ]
机构
[1] Univ Warsaw, Fac Phys, Inst Expt Phys, ul Pasteura 5, PL-02093 Warsaw, Poland
[2] Univ Iceland, Sci Inst, Dunhagi 3, IS-107 Reykjavik, Iceland
基金
欧盟地平线“2020”;
关键词
POLARITON; DYNAMICS;
D O I
10.1038/s42005-023-01319-5
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The spatial modulation of light via magneto-optical control is inherently inefficient due to the insensitivity of photons to external electromagnetic fields. The authors resort to strong coupling between semimagnetic matter and light in microcavities to modulate the spatial properties of the emitted light with an external magnetic field. The insensitivity of photons towards external magnetic fields forms one of the hardest barriers against efficient magneto-optical control, aiming at modulating the polarization state of light. However, there is even scarcer evidence of magneto-optical effects that can spatially modulate light. Here, we demonstrate the latter by exploiting strongly coupled states of semimagnetic matter and light in planar semiconductor microcavities. We nonresonantly excite two spatially adjacent exciton-polariton condensates which, through inherent ballistic near field coupling mechanism, spontaneously synchronise into a dissipative quantum fluidic supermode of definite parity. Applying a magnetic field along the optical axis, we continuously adjust the light-matter composition of the condensate exciton-polaritons, inducing a supermode switch into a higher order mode of opposite parity. Our findings set the ground towards magnetic spatial modulation of nonlinear light.
引用
收藏
页数:7
相关论文
共 55 条
  • [41] Synthetic band-structure engineering in polariton crystals with non-Hermitian topological phases
    Pickup, L.
    Sigurdsson, H.
    Ruostekoski, J.
    Lagoudakis, P. G.
    [J]. NATURE COMMUNICATIONS, 2020, 11 (01)
  • [42] Engineering spin-orbit synthetic Hamiltonians in liquid-crystal optical cavities
    Rechcinska, Katarzyna
    Krol, Mateusz
    Mazur, Rafal
    Morawiak, Przemyslaw
    Mirek, Rafal
    Lempicka, Karolina
    Bardyszewski, Witold
    Matuszewski, Michal
    Kula, Przemyslaw
    Piecek, Wiktor
    Lagoudakis, Pavlos G.
    Pietka, Barbara
    Szczytko, Jacek
    [J]. SCIENCE, 2019, 366 (6466) : 727 - +
  • [43] Magnetic field effect on the lasing threshold of a semimagnetic polariton condensate
    Rousset, J. -G.
    Pietka, B.
    Krol, M.
    Mirek, R.
    Lekenta, K.
    Szczytko, J.
    Pacuski, W.
    Nawrocki, M.
    [J]. PHYSICAL REVIEW B, 2017, 96 (12)
  • [44] Strong coupling and polariton lasing in Te based microcavities embedding (Cd,Zn)Te quantum wells
    Rousset, J. -G.
    Pietka, B.
    Krol, M.
    Mirek, R.
    Lekenta, K.
    Szczytko, J.
    Borysiuk, J.
    Suffczynski, J.
    Kazimierczuk, T.
    Goryca, M.
    Smolenski, T.
    Kossacki, P.
    Nawrocki, M.
    Pacuski, W.
    [J]. APPLIED PHYSICS LETTERS, 2015, 107 (20)
  • [45] Spin-Orbit Coupling for Photons and Polaritons in Microstructures
    Sala, V. G.
    Solnyshkov, D. D.
    Carusotto, I.
    Jacqmin, T.
    Lemaitre, A.
    Tercas, H.
    Nalitov, A.
    Abbarchi, M.
    Galopin, E.
    Sagnes, I.
    Bloch, J.
    Malpuech, G.
    Amo, A.
    [J]. PHYSICAL REVIEW X, 2015, 5 (01):
  • [46] An electrically pumped polariton laser
    Schneider, Christian
    Rahimi-Iman, Arash
    Kim, Na Young
    Fischer, Julian
    Savenko, Ivan G.
    Amthor, Matthias
    Lermer, Matthias
    Wolf, Adriana
    Worschech, Lukas
    Kulakovskii, Vladimir D.
    Shelykh, Ivan A.
    Kamp, Martin
    Reitzenstein, Stephan
    Forchel, Alfred
    Yamamoto, Yoshihisa
    Hoefling, Sven
    [J]. NATURE, 2013, 497 (7449) : 348 - 352
  • [47] Polariton polarization rectifier
    Sedov, Evgeny S.
    Rubo, Yuri G.
    Kavokin, Alexey V.
    [J]. LIGHT-SCIENCE & APPLICATIONS, 2019, 8 (1)
  • [48] Persistent Self-Induced Larmor Precession Evidenced through Periodic Revivals of Coherence
    Sigurdsson, H.
    Gnusov, I.
    Alyatkin, S.
    Pickup, L.
    Gippius, N. A.
    Lagoudakis, P. G.
    Askitopoulos, A.
    [J]. PHYSICAL REVIEW LETTERS, 2022, 129 (15)
  • [49] Microcavity polaritons for topological photonics [Invited]
    Solnyshkov, Dmitry D.
    Malpuech, Guillaume
    St-Jean, Philippe
    Ravets, Sylvain
    Bloch, Jacqueline
    Amo, Alberto
    [J]. OPTICAL MATERIALS EXPRESS, 2021, 11 (04) : 1119 - 1142
  • [50] Halide perovskites enable polaritonic XY spin Hamiltonian at room temperature
    Tao, Renjie
    Peng, Kai
    Haeberle, Louis
    Li, Quanwei
    Jin, Dafei
    Fleming, Graham R.
    Kena-Cohen, Stephane
    Zhang, Xiang
    Bao, Wei
    [J]. NATURE MATERIALS, 2022, 21 (07) : 761 - +