High Finesse Fiber Fabry-Perot Cavities: Stabilization and Mode Matching Analysis
arXiv:1508.05289 · doi:10.1007/s00340-015-6281-z
Abstract
Fiber Fabry-Perot cavities, formed by micro-machined mirrors on the end-facets of optical fibers, are used in an increasing number of technical and scientific applications, where they typically require precise stabilization of their optical resonances. Here, we study two different approaches to construct fiber Fabry-Perot resonators and stabilize their length for experiments in cavity quantum electrodynamics with neutral atoms. A piezo-mechanically actuated cavity with feedback based on the Pound-Drever-Hall locking technique is compared to a novel rigid cavity design that makes use of the high passive stability of a monolithic cavity spacer and employs thermal self-locking and external temperature tuning. Furthermore, we present a general analysis of the mode matching problem in fiber Fabry-Perot cavities, which explains the asymmetry in their reflective line shapes and has important implications for the optimal alignment of the fiber resonators. Finally, we discuss the issue of fiber-generated background photons. We expect that our results contribute towards the integration of high-finesse fiber Fabry-Perot cavities into compact and robust quantum-enabled devices in the future.
The Supplemental Material is included in the source code of the article that can be downloaded from this arXiv page (see "Other formats"). Peer-reviewed version with changes to text and figures
References in corpus (7)
- An Elementary Quantum Network of Single Atoms in Optical Cavities
- Strong atom-field coupling for Bose-Einstein condensates in an optical cavity on a chip
- Fiber Fabry-Perot cavity with high finesse
- A single ion coupled to an optical fiber cavity
- Cavity-Modified Collective Rayleigh Scattering of Two Atoms
- Frequency splitting of polarization eigenmodes in microscopic Fabry-Perot cavities
- The Role of Mode Match in Asymmetric Fiber Cavities
Cited by in corpus (36)
- Cavity quantum electrodynamics with color centers in diamond
- Achievements and Perspectives of Optical Fiber Fabry-Perot Cavities
- Strong Purcell effect on a neutral atom trapped in an open fiber cavity
- Telecom-band quantum optics with ytterbium atoms and silicon nanophotonics
- Photothermal effects in ultra-precisely stabilized tunable microcavities
- Tunable Fiber Fabry-Perot Cavities with High Passive Stability
- Deterministic quantum state transfer between remote qubits in cavities
- Optimal design of diamond-air microcavities for quantum networks using an analytical approach
- Fiber cavities with integrated mode matching optics
- Laser cooling a membrane-in-the-middle system close to the quantum ground state from room temperature
- Dual-wavelength fiber Fabry-Perot cavities with engineered birefringence
- Cryogenic platform for coupling color centers in diamond membranes to a fiberbased microcavity
- Direct laser-written optomechanical membranes in fiber Fabry-Perot cavities
- Widely-tunable, doubly-resonant Raman scattering on diamond in an open microcavity
- A High-Mechanical Bandwidth Fabry-Perot Fiber Cavity
- Dynamical backaction in an ultrahigh-finesse fiber-based microcavity
- A fiber Fabry-Perot cavity based spectroscopic gas sensor
- A Quantum Repeater Node with Trapped Ions: A Realistic Case Example
- Non-adiabatic Storage of Short Light Pulses in an Atom-Cavity System
- Polarisation oscillations in birefringent emitter-cavity systems
- Microelectromechanical-System-Based Design of a High-Finesse Fiber Cavity Integrated with an Ion Trap
- Pushing Purcell-enhancement beyond its limits
- A tunable fiber Fabry-Perot cavity for hybrid optomechanics stabilized at 4 K
- Optimized single-shot laser ablation of concave mirror templates on optical fibers
- Ultrafast high-fidelity state readout of single neutral atom
- Continuously and widely tunable frequency-stabilized laser based on an optical frequency comb
- Correlated photon-pair emission from a cw-pumped Fabry-Perot microcavity
- Investigation of Purcell enhancement of quantum dots emitting in the telecom O-band with an open fiber-cavity
- Multi-resonant open-access micro-cavity arrays for light matter interaction
- Raman Imaging of Atoms Inside a High-bandwidth Cavity
- Purcell-Enhanced Generation of Photonic Bell States via the Inelastic Scattering of Single Atoms
- Ground-State Cooling of a Single Atom in a High-Bandwidth Cavity
- A cavity optomechanical locking scheme based on the optical spring effect
- Fano profile in double cavity optomechanical system with harmonically bound mirrors
- Scalable low-latency entanglement distribution for distributed quantum computing
- Precise and extensive characterization of an optical resonator for cavity-based quantum networks