Focusing characteristics of a 4π parabolic mirror light-matter interface

نویسندگان

  • Lucas Alber
  • Martin Fischer
  • Marianne Bader
  • Klaus Mantel
  • Markus Sondermann
  • Gerd Leuchs
چکیده

Background: Focusing with a 4π parabolic mirror allows for concentrating light from nearly the complete solid angle, whereas focusing with a single microscope objective limits the angle cone used for focusing to half solid angle at maximum. Increasing the solid angle by using deep parabolic mirrors comes at the cost of adding more complexity to the mirror’s fabrication process and might introduce errors that reduce the focusing quality. Methods: To determine these errors, we experimentally examine the focusing properties of a 4π parabolic mirror that was produced by single-point diamond turning. The properties are characterized with a single 174Yb+ ion as a mobile point scatterer. The ion is trapped in a vacuum environment with a movable high optical access Paul trap. Results: We demonstrate an effective focal spot size of 209 nm in lateral and 551 nm in axial direction. Such tight focusing allows us to build an efficient light-matter interface. Conclusion: Our findings agree with numerical simulations incorporating a finite ion temperature and interferometrically measured wavefront aberrations induced by the parabolic mirror. We point at further technological improvements and discuss the general scope of applications of a 4π parabolic mirror.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

Manufacturing a trough parabolic solar collector and predicting its theoretical performance

The aim of this research was manufacturing a parabolic trough solar collector in which reflecting surface is made of mirror steel rather than usual mirror and also predicting its theoretical performance.by adjusting planar ⩝ -shaped structures parallel to each other and welding them together, the main supporting structure was assembled and a parabolic-shape Teflon arc was installed in the apert...

متن کامل

3D mapping of intensity field about the focus of a micrometer-scale parabolic mirror.

We report on the fabrication and diffraction-limited characterization of parabolic focusing micromirrors. Sub-micron beam waists are measured for mirrors with 10-μm radius aperture and measured fixed focal lengths in the range from 24 μm to 36 μm. Optical characterization of the 3D intensity in the near-field produced when the device is illuminated with collimated light is performed using a mod...

متن کامل

Design of a new soft X-ray double crystal monochromator beamline, BL-13

A new soft X-ray double crystal monochromator beamline is designed and will be constructed at BL-13. Special care is paid for the degree of parallelism of the beam and the beam size at the focal point. We propose to use two toroidal mirrors, one for producing a parallel beam and another for focusing the beam at the sample position. Although a toroidal mirror is not ideal to produce a parallel b...

متن کامل

Using Rolling Circles to Generate Caustic Envelopes Resulting from Reflected Light

When light rays radiating outward from a source S (called a radiant) in the plane are reflected off of a curved mirror (a smooth curve) in that plane, the reflected light rays produce a brightly lit curve called a caustic which is the envelope of those reflected rays. Pictured below on the left are two such caustics resulting from radiants inside an elliptical mirror. The radiants are at the do...

متن کامل

Monolithic dielectric surfaces as new low-loss light-matter interfaces.

We propose a new mirror architecture, which is solely based upon structuring of the surface of a monolithic, possibly monocrystalline, bulk material. We found that a structure of T-shaped ridges of a subwavelength grating can theoretically provide 100% reflectivity. Since no material needs to be added to the mirror device, lowest mechanical loss can also be expected. Our approach might have com...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:

دوره   شماره 

صفحات  -

تاریخ انتشار 2017