Sideband cooling and coherent dynamics in a microchip multi-segmented ion trap

نویسندگان

  • Stephan A Schulz
  • Ulrich Poschinger
  • Frank Ziesel
  • Ferdinand Schmidt-Kaler
چکیده

Miniaturized ion trap arrays with many trap segments present a promising architecture for scalable quantum information processing. The miniaturization of segmented linear Paul traps allows partitioning the microtrap into different storage and processing zones. The individual position control of many ions—each of them carrying qubit information in its long-lived electronic levels—by the external trap control voltages is important for the implementation of next generation large-scale quantum algorithms. We present a novel scalable microchip multi-segmented ion trap with two different adjacent zones, one for the storage and another dedicated to the processing of quantum information using single ions and linear ion crystals. A pair of radio-frequency-driven electrodes and 62 independently controlled dc electrodes allows shuttling of single ions or linear ion crystals with numerically designed axial potentials at axial and radial trap frequencies of a few megahertz. We characterize and optimize the microtrap using sideband spectroscopy on the narrow S1/2 ↔ D5/2 qubit transition of the 40Ca ion, and demonstrate coherent single-qubit Rabi rotations and optical cooling methods. We determine the heating rate using sideband cooling measurements to the vibrational ground state, which is necessary for subsequent two-qubit quantum logic operations. The applicability for scalable quantum information processing is proved. 1 Author to whom any correspondence should be addressed. New Journal of Physics 10 (2008) 045007 1367-2630/08/045007+15$30.00 © IOP Publishing Ltd and Deutsche Physikalische Gesellschaft

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

Sympathetic ground-state cooling and coherent manipulation with two-ion crystals

We have cooled a two-ion crystal to the ground-state of its collective modes of motion. Laser cooling, more specifically resolved sideband cooling, is performed sympathetically by illuminating only one of the two 40Ca ions in the crystal. The heating rates of the motional modes of the crystal in our linear trap have been measured, and we found them considerably smaller than those previously rep...

متن کامل

Heating rates and ion motion control in a Y-junction surface-electrode trap

We measure ion heating following transport throughout a Y-junction surface-electrode ion trap. By carefully selecting the trap voltage update rate during adiabatic transport along a trap arm, we observe minimal heating relative to the anomalous heating background. Transport through the junction results in an induced heating between 37 and 150 quanta in the axial direction per traverse. To relia...

متن کامل

Resolved-sideband Raman cooling of a bound atom to the 3D zero-point energy.

We report laser-cooling of a single Be ion held in a rf (Paul) ion trap to where it occupies 9 + the quantum-mechanical ground state of motion. With the use of resolved-sideband stimulatedRaman cooling, the zero-point of motion is achieved 98% of the time in 1-D and 92% of the time in 3-D. Cooling to the zero-point energy appears to be a crucial prerequisite for future experiments such as the r...

متن کامل

Experiments towards quantum information with trapped Calcium ions

Ground state cooling and coherent manipulation of ions in an rf-(Paul) trap is the prerequisite for quantum information experiments with trapped ions. With resolved sideband cooling on the optical S1/2 -D5/2 quadrupole transition we have cooled one and two Ca ions to the ground state of vibration with up to 99.9% probability. With a novel cooling scheme utilizing electromagnetically induced tra...

متن کامل

Trapped-ion state detection through coherent motion.

We demonstrate a general method for state detection of trapped ions that can be applied to a large class of atomic and molecular species. We couple a spectroscopy ion (27Al+) to a control ion (25Mg+) in the same trap and perform state detection through off-resonant laser excitation of the spectroscopy ion that induces coherent motion. The motional amplitude, dependent on the spectroscopy ion st...

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 2008