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The mathematical expression known as the wave function, ψ, contains information about each orbital and the wavelike properties of electrons in an isolated atom. When atoms are bound together in a molecule, the wave functions combine to produce new mathematical descriptions that have different shapes. This process of combining the wave functions for atomic orbitals is called hybridization and is mathematically accomplished by the linear combination of atomic orbitals. The new orbitals that...
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Hydrocarbons such as alkanes, alkenes, and alkynes show characteristic C–H stretching absorption bands. These IR stretching frequencies depend on the hybridization of the involved carbon atom and can be explained in terms of the s character of each hybridized atomic orbital.
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Double resonance techniques in Nuclear Magnetic Resonance (NMR) spectroscopy involve the simultaneous application of two different frequencies or radiofrequency pulses to manipulate and observe two distinct nuclear spins. One important application of double resonance is spin decoupling, which selectively suppresses coupling with one type of nucleus while observing the NMR signal from another nucleus, simplifying the spectrum and enhancing resolution.
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Scalable Quantum Integrated Circuits on Superconducting Two-Dimensional Electron Gas Platform
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Hybrid superconductor-atom quantum interface with Raman chirped shortcut to adiabatic passage.

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    We developed a fast and robust quantum gate for hybrid atom-photon systems. This new method enhances quantum state storage and readout for superconducting qubits.

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    Area of Science:

    • Quantum Information Science
    • Atomic Physics
    • Superconducting Circuits

    Background:

    • Hybrid atom-photon systems are crucial for quantum interfaces.
    • Efficient quantum gates are needed to integrate atomic and superconducting components.

    Purpose of the Study:

    • To propose a scheme for hybrid state transfer and a controlled-PHASE gate.
    • To leverage Raman chirped shortcut to adiabatic passage for enhanced performance.

    Main Methods:

    • Utilizing Raman chirped shortcut to adiabatic passage for quantum operations.
    • Analyzing the gate's speed and robustness against decoherence and parameter variations.

    Main Results:

    • Demonstrated a fast and robust hybrid two-qubit gate.
    • The proposed gate shows improved resilience compared to existing Raman-based methods.
    • The scheme is effective against variations in vacuum coupling and two-photon detuning.

    Conclusions:

    • The developed hybrid gate is suitable for long-term storage and optical readout of superconducting qubits.
    • Enables entanglement swapping between distinct quantum components.
    • Offers a promising advancement for integrated quantum technologies.