Jingjun You, Su Yi, Yuangang Deng, "Spin-momentum-mixing interactions with cavity-mediated supersolid in spinor condensates," Photonics Res. 13, 987 (2025)

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- Photonics Research
- Vol. 13, Issue 4, 987 (2025)
![(a) Schematic for creating the two-component TCM. (b) Density distribution of self-ordered SS phase in terms of cavity amplitude Re[α] and Im[α] forms a circle. The profile exhibits a λ/2 period and corresponds to the positions changing continuously along the y axis by varying arg(α), demonstrating spontaneous continuous translational symmetry breaking. (c) Momentum-exchange and spin-momentum-mixing interactions between controlled spin atoms in different momentum states, including |k0⟩=|0,0⟩, |k1⟩=|±kL,kL⟩, and |k2⟩=|±kL,−kL⟩.](/richHtml/prj/2025/13/4/987/img_001.jpg)
Fig. 1. (a) Schematic for creating the two-component TCM. (b) Density distribution of self-ordered SS phase in terms of cavity amplitude Re [ α ] and Im [ α ] forms a circle. The profile exhibits a λ / 2 period and corresponds to the positions changing continuously along the y axis by varying arg ( α ) , demonstrating spontaneous continuous translational symmetry breaking. (c) Momentum-exchange and spin-momentum-mixing interactions between controlled spin atoms in different momentum states, including | k 0 ⟩ = | 0,0 ⟩ , | k 1 ⟩ = | ± k L , k L ⟩ , and | k 2 ⟩ = | ± k L , − k L ⟩ .

Fig. 2. (a) Cavity-mediated two dynamical SOC processes between the atomic zero-momentum | ↑ ⟩ states and four nonzero-momentum | ↓ ⟩ states. (b) Schematic representation of momentum space excitation paths with respect to two Raman channels (dashed and solid lines).

Fig. 3. (a) Phase diagram of the ground state on the g 1 -g 2 parameter plane. The solid (dashed) line marks numerical (analytical) phase boundaries. (b) and (c) show, respectively, g 1 dependence of | α | and N ↓ for different values of g 2 .

Fig. 4. (a) g 1 dependence of collective excitations ϵ 1 (ϵ 2 ) of lowest (middle) branches with g 1 / g 2 = 1 . (b) The lowest branch ϵ 1 and (c) order parameter Θ as a function of g 1 for different values of g 2 .

Fig. 5. The condensates wave functions of the PW (row 1) and SS phases (row 2) for ( g 1 , g 2 ) = ( 0, 7 ) E L / ℏ and ( 7, 7 ) E L / ℏ in spin-↓ atom, respectively. Columns 1–3 show the density ρ ↓ (units of cm − 2 ), relative phase Δ ϕ , and momentum distribution.

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