Temporal tweezing of light: trapping and manipulation of temporal cavity solitons
arXiv:1410.4836 · doi:10.1038/ncomms8370
Abstract
Optical tweezers use laser light to trap and move microscopic particles in space. Here we demonstrate a similar control over ultrashort light pulses, but in time. Our experiment involves temporal cavity solitons that are stored in a passive loop of optical fiber pumped by a continuous-wave "holding" laser beam. The cavity solitons are trapped into specific time slots through a phase-modulation of the holding beam, and moved around in time by manipulating the phase profile. We report both continuous and discrete manipulations of the temporal positions of picosecond light pulses, with the ability to simultaneously and independently control several pulses within a train. We also study the transient drifting dynamics and show complete agreement with theoretical predictions. Our study demonstrates how the unique particle-like characteristics of cavity solitons can be leveraged to achieve unprecedented control over light. These results could have significant ramifications for optical information processing.
10 pages, 7 figures, including supplementary material
References in corpus (3)
Cited by in corpus (59)
- Super-efficient temporal solitons in mutually coupled optical cavities
- Synchronization of coupled optical microresonators
- Universal mechanism for the binding of temporal cavity solitons
- From the Lugiato-Lefever equation to microresonator based soliton Kerr frequency combs
- All-Optical Dissipative Discrete Time Crystals
- Spontaneous symmetry breaking of dissipative optical solitons in a two-component Kerr resonator
- Imaging soliton dynamics in optical microcavities
- Spectral purification of microwave signals with disciplined dissipative Kerr solitons
- Heteronuclear soliton molecules in optical microresonators
- On-demand harnessing of photonic soliton molecules
- Observations of spatiotemporal instabilities in the strong-driving regime of an AC-driven nonlinear Schrödinger system
- Competing Turing and Faraday instabilities in longitudinally modulated passive resonators
- Parametrically driven Kerr cavity solitons
- Kerr-Induced Synchronization of a Cavity Soliton to an Optical Reference
- Super cavity solitons and the coexistence of multiple nonlinear states in a tristable passive Kerr resonator
- Spontaneous symmetry breaking and trapping of temporal Kerr cavity solitons by pulsed or amplitude modulated driving fields
- Experimental observation of coherent cavity soliton frequency combs in silica microspheres
- Coexistence and interactions between nonlinear states with different polarizations in a monochromatically driven passive Kerr resonator
- Writing and erasing of temporal cavity solitons by direct phase modulation of the cavity driving field
- Experimental observations of bright dissipative Kerr cavity solitons and their collapsed snaking in a driven resonator with normal dispersion
- Spontaneous creation and annihilation of temporal cavity solitons in a coherently-driven passive fiber resonator
- An all-optical buffer based on temporal cavity solitons operating at 10 Gb/s
- Generation and dynamics of solitonic pulses due to pump amplitude modulation at normal group velocity dispersion
- Gain-switched semiconductor laser driven soliton microcombs
- Electrical Addressing and Temporal Tweezing of Localized Pulses in Passively Mode-Locked Semiconductor Lasers
- Sideband Injection Locking in Microresonator Frequency Combs
- Impact of de-synchronization and drift on soliton-based Kerr frequency combs in the presence of pulsed driving fields
- Dynamics of Localized Structures in Systems with Broken Parity Symmetry
- Dissipative polarization domain walls in a passive driven Kerr resonator
- Observation of Arnold Tongues in Coupled Soliton Kerr Frequency Combs
- Temporal Walk-off Induced Dissipative Quadratic Solitons
- Deterministic generation of single soliton Kerr frequency comb in microresonators by a single shot pulsed trigger
- Dissipative Kerr solitons, breathers and chimera states in coherently driven passive cavities with parabolic potential
- Bunching of temporal cavity solitons via forward Brillouin scattering
- Programmable access to microresonator solitons with modulational sideband heating
- Soliton trapping and comb self-referencing in a single microresonator with and nonlinearities
- Equalization of pulse timings in an excitable microlaser system with delay
- On the spontaneous time-reversal symmetry breaking in synchronously-pumped passive Kerr resonators
- Forced Oscillatory Motion of Trapped Counter-Propagating Solitons
- Theory and Application of Cavity Solitons in Photonic Devices
- Variational approach to study soliton dynamics in a passive fiber loop resonator with coherently driven phase-modulated external field
- Dynamics of temporal Kerr cavity solitons in the presence of rapid parameter inhomogeneities: from bichromatic driving to third-order dispersion
- Phase incoherent photonic molecules in V-shaped mode-locked VECSELs
- Carrier envelope phase dynamics of cavity solitons: soliton stability and scaling law
- Graphene-based Solitons for Spatial Division Multiplexed Switching
- A Microphotonic Astrocomb
- All-Optical Azimuthal Trapping of Dissipative Kerr Multi-Solitons for Relative Noise Suppression
- Emission of intense resonant radiation by dispersion-managed Kerr cavity solitons
- Kerr Superoscillator Model for Microresonator Frequency Combs
- 120-fs single-pulse generation from stretched-pulse fiber Kerr resonators
- Kink Dynamics in a Non-Autonomous Sine-Gordon Model
- Nonlinear topological symmetry protection in a dissipative system
- Chirped temporal solitons in driven optical resonators
- Temporal Solitons in Microresonators driven by Optical Pulses
- Phase and Intensity Control of Dissipative Kerr Cavity Solitons
- Experimental and numerical investigations of switching wave dynamics in a normally dispersive fiber ring resonator
- Parametric Resonance in the Non-Autonomous Sine-Gordon Model
- Impact of phase modulation on the dynamics of temporal localized structures in injected Kerr microcavities
- VIPER: Vectorial Interferometric Polarimeter for Electric-field Reconstruction