First Order Quantum Phase Transition in Adiabatic Quantum Computation
نویسنده
چکیده
We investigate the connection between local minima in the problem Hamiltonian and first order quantum phase transitions during an adiabatic quantum computation. We demonstrate how some properties of the local minima can lead to an extremely small gap that is exponentially sensitive to the Hamiltonian parameters. Using perturbation expansion, we derive an analytical formula that can not only predict the behavior of the gap, but also provide insight on how to controllably vary the gap size by changing the parameters. We show agreement with numerical calculations for a weighted maximum independent set problem instance.
منابع مشابه
Adiabatic Computation -a Toy Model
We discuss a toy model for adiabatic quantum computation which displays some phenomenological properties expected in more realistic implementations. This model has two free parameters: the adiabatic evolution parameter s and the α parameter which emulates many-variables constrains in the classical computational problem. The proposed model presents, in the s − α plane, a line of first order quan...
متن کاملFirst-order transitions and the performance of quantum algorithms in random optimization problems
We present a study of the phase diagram of a random optimization problem in the presence of quantum fluctuations. Our main result is the characterization of the nature of the phase transition, which we find to be a first-order quantum phase transition. We provide evidence that the gap vanishes exponentially with the system size at the transition. This indicates that the quantum adiabatic algori...
متن کاملIii Quantum Phase Transitions in Collective Spin Models. Applications to Adiabatic Quantum Computation Quantum Phase Transitions Quantum Information Collective Spin Systems Lipkin-meshkov-glick Model Coherent Spin States Majorana Representation Semi-classical Limit Adiabatic Quantum Computation Remerciements -acknowledgements
Part I: Quantum Collective Spin Systems We use a coherent spin state formalism in order to study collective spin models, which have many applications in physics. In particular, the Lipkin-Meshkov-Glick (LMG) has been analyzed in the thermodynamic limit. The method developed during this work can, in principle, be used for more general Hamiltonians written as a function of the su(2) algebra gener...
متن کاملThe role of symmetries in adiabatic quantum algorithms
Exploiting the similarity between adiabatic quantum algorithms and quantum phase transitions, we argue that second-order transitions – typically associated with broken or restored symmetries – should be advantageous in comparison to first-order transitions. Guided by simple examples we construct an alternative adiabatic algorithm for the NPcomplete problem Exact Cover 3. We show numerically tha...
متن کاملExponential Enhancement of the Efficiency of Quantum Annealing by Non-Stoquastic Hamiltonians
Non-stoquastic Hamiltonians have both positive and negative signs in off-diagonal elements in their matrix representation in the standard computational basis and thus cannot be simulated efficiently by the standard quantum Monte Carlo method due to the sign problem. We describe our analytical studies of this type of Hamiltonians with infinite-range non-random as well as random interactions from...
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:
دوره شماره
صفحات -
تاریخ انتشار 2009