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Luminescent Organic Triplet Diradicals as Optically Addressable Molecular Qubits
Optical-spin interfaces that enable the photoinitialization, coherent microwave manipulation,
and optical read-out of ground state spins have been studied extensively in solid-state …
and optical read-out of ground state spins have been studied extensively in solid-state …
1, 1′-Biolympicenyl: A Stable Non-Kekulé Diradical with a Small Singlet and Triplet Energy Gap
Dimerization of delocalized polycyclic hydrocarbon radicals is a simple and versatile method
to create diradicals with tailored electronic structures and accessible high-spin states …
to create diradicals with tailored electronic structures and accessible high-spin states …
Enhancing the Optically Detected Magnetic Resonance Signal of Organic Molecular Qubits
In quantum information science and sensing, electron spins are often purified into a specific
polarization through an optical-spin interface, a process known as optically detected …
polarization through an optical-spin interface, a process known as optically detected …
Learning Radical Excited States from Sparse Data
Emissive organic radicals are currently of great interest for their potential use in the next
generation of highly efficient organic light emitting diode (OLED) devices and as molecular …
generation of highly efficient organic light emitting diode (OLED) devices and as molecular …
The Excited States of Chichibabin, M\" uller and related Singlet Diradicaloids based on Polyhalogenated Trityl Radicals
The tris (2, 4, 6-trichlorophenyl) methyl radical (TTM) has inspired the synthesis of several
luminescent diradicals and diradicaloids, providing an extraordinary opportunity to control …
luminescent diradicals and diradicaloids, providing an extraordinary opportunity to control …