Arbitrary waveform generator for quantum information processing with trapped ions.
نویسندگان
چکیده
Atomic ions confined in multi-electrode traps have been proposed as a basis for scalable quantum information processing. This scheme involves transporting ions between spatially distinct locations by use of time-varying electric potentials combined with laser or microwave pulses for quantum logic in specific locations. We report the development of a fast multi-channel arbitrary waveform generator for applying the time-varying electric potentials used for transport and for shaping quantum logic pulses. The generator is based on a field-programmable gate array controlled ensemble of 16-bit digital-to-analog converters with an update frequency of 50 MHz and an output range of ±10 V. The update rate of the waveform generator is much faster than relevant motional frequencies of the confined ions in our experiments, allowing diabatic control of the ion motion. Numerous pre-loaded sets of time-varying voltages can be selected with 40 ns latency conditioned on real-time signals. Here we describe the device and demonstrate some of its uses in ion-based quantum information experiments, including speed-up of ion transport and the shaping of laser and microwave pulses.
منابع مشابه
On the transport of atomic ions in linear and multidimensional ion trap arrays
Trapped atomic ions have become one of the most promising architectures for a quantum computer, and current effort is now devoted to the transport of trapped ions through complex segmented ion trap structures in order to scale up to much larger numbers of trapped ion qubits. This paper covers several important issues relevant to ion transport in any type of complex multidimensional rf (Paul) io...
متن کاملQuantum Information Processing with Trapped Ion Chains
Title of dissertation: QUANTUM INFORMATION PROCESSING WITH TRAPPED ION CHAINS Timothy Andrew Manning, Doctor of Philosophy, 2014 Dissertation directed by: Professor Christopher Monroe Joint Quantum Institute, University of Maryland Department of Physics and National Institute of Standards and Technology Trapped atomic ion systems are currently the most advanced platform for quantum information ...
متن کاملQuantum information processing and cavity QED experiments with trapped Ca+ ions
Single trapped Ca ions, stored in a linear Paul trap and laser–cooled to the ground state of their harmonic quantum motion are used for quantum information processing. As a demonstration, composite laser pulse sequences were used to implement phase gate and CNOT gate operation. For this, Stark shifts on the qubit transitions were precisely measured and compensated. With a single ion stored insi...
متن کاملQuantum Control, Quantum Information Processing, and Quantum-limited Metrology with Trapped Ions
We briefly discuss recent experiments on quantum information processing using trapped ions at NIST. A central theme of this work has been to increase our capabilities in terms of quantum computing protocols, but we have also applied the same concepts to improved metrology, particularly in the area of frequency standards and atomic clocks. Such work may eventually shed light on more fundamental ...
متن کاملElectron g - 2 , Entanglement , and Trapped - Ion Quantum Information Processing
Experiments on quantum-state synthesis of trapped ions and their connection to trappedelectron g 2 experiments are discussed briefly. The trapped-ion work has the overall goal of performing large-scale quantum information processing; however, the techniques employed can also be applied to fundamental tests and demonstrations of quantum mechanical principles, as well as to the improvement of qua...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- The Review of scientific instruments
دوره 84 3 شماره
صفحات -
تاریخ انتشار 2013