Non-reciprocal breathing solitons
arXiv:2405.10562 · doi:10.1103/nrv2-9h8z
Abstract
Breathing solitons consist of a fast beating wave within a compact envelope of stable shape and velocity. They can propagate and carry information and energy in a variety of contexts such as plasmas, optical fibers and cold atoms, but propagating breathers have remained elusive when energy conservation is broken. Here, we report on the observation of breathing, unidirectional, arbitrarily long-lived solitons in non-reciprocal, non-conservative active metamaterials. Combining precision desktop experiments, numerical simulations and perturbation theory on generalizations of the sine-Gordon and nonlinear Schrödinger equations, we demonstrate that unidirectional breathers generically emerge in weakly nonlinear non-reciprocal materials, and that their dynamics are governed by an unstable fixed point. Crucially, breathing solitons can persist for arbitrarily long times provided: (i) this fixed point displays a bifurcation when a delicate balance between energy injection and dissipation is struck; (ii) the initial conditions allow the dynamics to reach this bifurcation point. Importantly, discrete effects tend to stabilize these non-reciprocal breathers over a wider range of initial conditions. Our work establishes non-reciprocity as a promising avenue to generate stable nonlinear unidirectional waves, and could be generalized beyond metamaterials to optics, soft matter and superconducting circuits.
12 pages, 5 figures, plus appendix
References in corpus (39)
- Double-slit photoelectron interference in strong-field ionization of the neon dimer
- Edge states and topological invariants of non-Hermitian systems
- Exceptional Topology of Non-Hermitian Systems
- Topological phases of non-Hermitian systems
- Biorthogonal Bulk-Boundary Correspondence in Non-Hermitian Systems
- Observation of non-Hermitian bulk-boundary correspondence in quantum dynamics
- Efficient Light Funneling based on the non-Hermitian Skin Effect
- Non-Hermitian robust edge states in one-dimension: Anomalous localization and eigenspace condensation at exceptional points
- Non-reciprocal phase transitions
- Topological active matter
- Tunability of solitary wave properties in one dimensional strongly nonlinear phononic crystals
- Nonlinear conduction via solitons in a topological mechanical insulator
- Odd dynamics of living chiral crystals
- Generation of Sound Bullets with a Nonlinear Acoustic Lens
- Non-Hermitian Morphing of Topological Modes
- Nonreciprocity as a generic route to traveling states
- Exponentially-enhanced quantum sensing with non-Hermitian lattice dynamics
- Breathing dissipative solitons in optical microresonators
- Breather soliton dynamics in microresonators
- Phonons in a one-dimensional microfluidic crystal
- Scalar Active Mixtures: The Non-Reciprocal Cahn-Hilliard Model
- Non-Hermitian band topology and skin modes in active elastic media
- Dynamics of localized and patterned structures in the Lugiato-Lefever equation determine the stability and shape of optical frequency combs
- Non-Hermitian chiral phononics through optomechanically-induced squeezing
- Non-reciprocal topological solitons in active metamaterials
- Dynamics and topology of non-Hermitian elastic lattices with non-local feedback control interactions
- Photonic Metamaterial Analogue of a Continuous Time Crystal
- Cluster formation via sonic depletion forces in levitated granular matter
- Non-Hermitian dynamics and nonreciprocity of optically coupled nanoparticles
- Subwavelength modulational instability and plasmon oscillons in nanoparticle arrays
- Limit cycles turn active matter into robots
- Nonlinear waves in flexible mechanical metamaterials
- Topological defects in solids with odd elasticity
- Pattern formation by turbulent cascades
- Observation of cnoidal wave localization in non-linear topolectric circuits
- Non-reciprocal frustration: time crystalline order-by-disorder phenomenon and a spin-glass-like state
- Quadrature nonreciprocity: unidirectional bosonic transmission without breaking time-reversal symmetry
- Insensitive edge solitons in a non-Hermitian topological lattice
- Soliton splitting in quenched classical integrable systems
Cited by in corpus (4)
- Harnessing Nonlinearity to Tame Wave Dynamics in Nonreciprocal Active Systems
- Nonlinear skin breathing modes in one-dimensional nonreciprocal mechanical lattices
- Solution of Wave Acceleration and Non-Hermitian Jump in Nonreciprocal Lattices
- Nonlinearity-induced transition in heat conduction through a topological metamaterial of rotors