Title
Demonstration of a scalable, multiplexed ion trap for quantum information processing
Abstract
A scalable, multiplexed ion trap for quantum information processing is fabricated and tested. The trap design and fabrication process are optimized for scalability to small trap size and large numbers of interconnected traps, and for integration of control electronics and optics. Multiple traps with similar designs are tested with 111Cd+, 25Mg+, and 88Sr+ ions at room temperature and with 88Sr+ at 6 K, with respective ion lifetimes of 90 s, 300 ± 30 s, 56 ± 6 s, and 4.5 ± 1.1 hours. The motional heating rate for 25Mg+ at room temperature and a trap frequency of 1.6 MHz is measured to be 7 ± 3 quanta per millisecond. For 88Sr+ at 6 K and 540 kHz the heating rate is measured to be 220 ± 30 quanta per second.
Year
Venue
Keywords
2011
Quantum Information & Computation
respective ion lifetime,trap frequency,control electronics,heating rate,quantum information processing,trap design,multiplexed ion trap,room temperature,motional heating rate,small trap size,the contents of the keywords,multiple trap
DocType
Volume
Issue
Journal
9
11
ISSN
Citations 
PageRank 
1533-7146
4
0.61
References 
Authors
4
17