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Yale, Christopher G. ; Hogle, Craig W. ; Haltli, Raymond A. ; Nordquist, Christopher N. ; Revelle, Melissa R. ; Maunz, Peter L.
Revelle, Melissa R. ; Hogle, Craig W. ; Ruzic, Brandon R. ; Maunz, Peter L. ; Young, Kevin C. ; Lobser, Daniel L.
Maunz, Peter L. ; Lobser, Daniel L. ; Haltli, Raymond A. ; Hogle, Craig W. ; Hollowell, Andrew E. ; Revelle, Melissa R. ; Stick, Daniel L. ; Yale, Christopher G. ; Blain, Matthew G.
Maunz, Peter L. ; Blain, Matthew G. ; Lobser, Daniel L. ; Revelle, Melissa R. ; Yale, Christopher G. ; Haltli, Raymond A. ; Hogle, Craig W. ; Hollowell, Andrew E. ; Stick, Daniel L.
Blain, Matthew G. ; Haltli, Raymond A. ; Hogle, Craig W. ; Hollowell, Andrew E. ; Nordquist, Christopher N. ; Lepkowski, Stefan M. ; Lobser, Daniel L. ; Yale, Christopher G. ; Maunz, Peter L.
Lobser, Daniel L. ; Blain, Matthew G. ; Hogle, Craig W. ; Revelle, Melissa R. ; Stick, Daniel L. ; Yale, Christopher G. ; Maunz, Peter L.
Revelle, Melissa R. ; Blain, Matthew G. ; Haltli, Raymond A. ; Hogle, Craig W. ; Hollowell, Andrew E. ; Lobser, Daniel L. ; Nordquist, Christopher N. ; Rembetski, John F. ; Resnick, Paul J. ; Yale, Christopher G. ; Maunz, Peter L.
Lobser, Daniel L. ; Blain, Matthew G. ; Haltli, Raymond A. ; Hogle, Craig W. ; Hollowell, Andrew E. ; Revelle, Melissa R. ; Stick, Daniel L. ; Yale, Christopher G. ; Maunz, Peter L.
Revelle, Melissa R. ; Blain, Matthew G. ; Haltli, Raymond A. ; Hogle, Craig W. ; Hollowell, Andrew E. ; Lobser, Daniel L. ; Nordquist, Christopher N. ; Rembetski, John F. ; Resnick, Paul J. ; Yale, Christopher G. ; Maunz, Peter L.
Hogle, Craig W. ; Blain, Matthew G. ; Hollowell, Andrew E. ; Lobser, Daniel L. ; Revelle, Melissa R. ; Yale, Christopher G. ; Haltli, Raymond A. ; Maunz, Peter L. ; Leibfried, Dietrich; Todaro, Susanna; Mccormick, Katherine; Slichter, Daniel; Wilson, Andrew; Wineland, David
Lobser, Daniel L. ; Blain, Matthew G. ; Haltli, Raymond A. ; Hogle, Craig W. ; Hollowell, Andrew E. ; Revelle, Melissa R. ; Stick, Daniel L. ; Yale, Christopher G. ; Maunz, Peter L.
Clark, Craig R. ; Fortier, Kevin M. ; Maunz, Peter L. ; Blain, Matthew G. ; Hogle, Craig W. ; Barrick, Todd A. ; Shaner, Eric A.
Clark, Susan M. ; Hogle, Craig W. ; Young, Kevin C. ; Stick, Daniel L.
In this report we describe the construction and characterization of a small quantum processor based on trapped ions. This processor could ultimately be used to perform analogue quantum simulations with an engineered computationally-cold bath for increasing the system's robustness to noise. We outline the requirements to build such a simulator, including individual addressing, distinguishable detection, and low crosstalk between operations, and our methods to implement and characterize these requirements. Specifically for measuring crosstalk, we introduce a new method, simultaneous gate set tomography to characterize crosstalk errors.
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