Tailoring optical metamaterials to tune the atom-surface Casimir-Polder interaction
arXiv:1606.07990 · doi:10.1126/sciadv.aao4223
Abstract
Metamaterials are fascinating tools that can structure not only surface plasmons and electromagnetic waves but also electromagnetic vacuum fluctuations. The possibility of shaping the quantum vacuum is a powerful concept that ultimately allows engineering the interaction between macroscopic surfaces and quantum emitters such as atoms, molecules or quantum dots. The long-range atom-surface interaction, known as Casimir-Polder interaction, is of fundamental importance in quantum electrodynamics but also attracts a significant interest for platforms that interface atoms with nanophotonic devices. Here we perform a spectroscopic selective reflection measurement of the Casimir-Polder interaction between a Cs(6P_{3/2}) atom and a nanostructured metallic planar metamaterial. We show that by engineering the near-field plasmonic resonances of the metamaterial, we can successfully tune the Casimir-Polder interaction, demonstrating both a strong enhancement and reduction with respect to its non-resonant value. We also show an enhancement of the atomic spontaneous emission rate due to its coupling with the evanescent modes of the nanostructure. Probing excited state atoms next to nontrivial tailored surfaces is a rigorous test of quantum electrodynamics. Engineering Casimir-Polder interactions represents a significant step towards atom trapping in the extreme near field, possibly without the use of external fields.
21 pages, 9 figures
References in corpus (6)
- Superradiance for atoms trapped along a photonic crystal waveguide
- Measurement of the Temperature Dependence of the Casimir-Polder Force
- Measurement of the Casimir force between a gold sphere and silicon surface with nanoscale trench arrays
- Lamb-Dicke spectroscopy of atoms in a hollow-core photonic crystal fibre
- Casimir-Polder forces in the presence of thermally excited surface modes
- Casimir-Polder effect with thermally excited surfaces
Cited by in corpus (13)
- Nonequilibrium Thermodynamics of Quantum Friction
- Atom-surface physics: A review
- Wading through the void: Exploring quantum friction and nonequilibrium fluctuations
- Coupling of atomic quadrupole transitions with resonant surface plasmons
- Nonequilibrium atom-surface interaction with lossy multi-layer structures
- Plasmono-Atomic Interactions on a Fiber Tip
- Efficient optical pumping of alkaline atoms for evanescent fields at dielectric-vapor interfaces
- Large optical depth frequency modulation spectroscopy
- Tailoring sub-Doppler spectra of thermal atoms with a dielectric optical metasurface chip
- Effects of control fields on the pair creation and the vacuum information transmission
- Cooperative atomic emission from a line of atoms interacting with a resonant plane surface
- Probing atoms and molecules close to macroscopic bodies
- Selective reflection Casimir-Polder spectroscopy in vapor cells: the influence of the thermal velocity distribution