Preparation and addressability of molecular vibrational qubit states in the presence of anharmonic resonance
โ Scribed by Ulrike Troppmann; Carmen M Tesch; Regina de Vivie-Riedle
- Publisher
- Elsevier Science
- Year
- 2003
- Tongue
- English
- Weight
- 413 KB
- Volume
- 378
- Category
- Article
- ISSN
- 0009-2614
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โฆ Synopsis
Recently, our group has exemplified the possibility of quantum computing with molecular vibrations in a 2D model of acetylene. Specially shaped fs-laser pulses in the IR-regime represent the global quantum gates and can be acquired by optimal control theory. With regard to leakage from the qubit basis used for quantum computation, the influence of dark, non-IR-active modes coupled via anharmonic resonances is an important issue. In a 3D model we demonstrate the selective preparation of a vibrational eigenstate in near anharmonic resonance. Furthermore, a Hadamard gate is realized, the first step in the preparation of a Bell state, also demonstrated.
๐ SIMILAR VOLUMES
TheaJ= OJ-doublet txnsitionsofOCS isotopes('6012C32S, I6 I2 33 I6 '\* 34 0 C S, 0 C S, '6013C32S and "O'\*C3\*S) in the (01' 0) vibrational state have been measured in a molecular-beam electric-resonance spectrometer equipped with a nozzle source. Rotation-vibration coupling constams and electric di
The ti = 0, I-doubler transitions in the fat excited state of the bending vibration of 16012~3% have been investigated using the molecular-beam electric-resonance method. The I-doubling constant up to second order in JU+lI has beea derived. The electric and magnetic properties obtained are the elect