scholarly journals Doubling the Size of Quantum Simulators by Entanglement Forging

PRX Quantum ◽  
2022 ◽  
Vol 3 (1) ◽  
Author(s):  
Andrew Eddins ◽  
Mario Motta ◽  
Tanvi P. Gujarati ◽  
Sergey Bravyi ◽  
Antonio Mezzacapo ◽  
...  
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2021 ◽  
Vol 7 (1) ◽  
Author(s):  
Qi Gao ◽  
Gavin O. Jones ◽  
Mario Motta ◽  
Michihiko Sugawara ◽  
Hiroshi C. Watanabe ◽  
...  

AbstractA quantum chemistry study of the first singlet (S1) and triplet (T1) excited states of phenylsulfonyl-carbazole compounds, proposed as useful thermally activated delayed fluorescence (TADF) emitters for organic light emitting diode (OLED) applications, was performed with the quantum Equation-Of-Motion Variational Quantum Eigensolver (qEOM-VQE) and Variational Quantum Deflation (VQD) algorithms on quantum simulators and devices. These quantum simulations were performed with double zeta quality basis sets on an active space comprising the highest occupied and lowest unoccupied molecular orbitals (HOMO, LUMO) of the TADF molecules. The differences in energy separations between S1 and T1 (ΔEST) predicted by calculations on quantum simulators were found to be in excellent agreement with experimental data. Differences of 17 and 88 mHa with respect to exact energies were found for excited states by using the qEOM-VQE and VQD algorithms, respectively, to perform simulations on quantum devices without error mitigation. By utilizing state tomography to purify the quantum states and correct energy values, the large errors found for unmitigated results could be improved to differences of, at most, 4 mHa with respect to exact values. Consequently, excellent agreement could be found between values of ΔEST predicted by quantum simulations and those found in experiments.


2009 ◽  
Vol 6 (12) ◽  
pp. 2447-2450
Author(s):  
Hisazumi Akai ◽  
Wilson Agerico Diño ◽  
Koichi Kusakabe ◽  
Tsuyoshi Miyazaki ◽  
Yoshitada Morikawa ◽  
...  

2021 ◽  
Author(s):  
Sridhar Majety ◽  
Victoria A. Norman ◽  
Liang Li ◽  
Miranda Bell ◽  
Pranta Saha ◽  
...  

2018 ◽  
Vol 4 (10) ◽  
pp. eaat8880 ◽  
Author(s):  
Itamar Rosenberg ◽  
Dror Liran ◽  
Yotam Mazuz-Harpaz ◽  
Kenneth West ◽  
Loren Pfeiffer ◽  
...  

Exciton-polaritons are mutually interacting quantum hybridizations of confined photons and electronic excitations. Here, we demonstrate a system of optically guided, electrically polarized exciton-polaritons (“dipolaritons”) that displays up to 200-fold enhancement of the polariton-polariton interaction strength compared to unpolarized polaritons. The magnitude of the dipolar interaction enhancement can be turned on and off and can be easily tuned over a very wide range by varying the applied polarizing electric field. The large interaction strengths and the very long propagation distances of these fully guided dipolaritons open up new opportunities for realizing complex quantum circuitry and quantum simulators, as well as topological states based on exciton-polaritons, for which the interactions between polaritons need to be large and spatially or temporally controlled. The results also raise fundamental questions on the origin of these large enhancements.


2018 ◽  
Vol 97 (21) ◽  
Author(s):  
F. Tacchino ◽  
A. Chiesa ◽  
M. D. LaHaye ◽  
S. Carretta ◽  
D. Gerace
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2018 ◽  
Vol 120 (18) ◽  
Author(s):  
Hyosub Kim ◽  
YeJe Park ◽  
Kyungtae Kim ◽  
H.-S. Sim ◽  
Jaewook Ahn

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