Correlated spectroscopy of electric noise with color center clusters
- URL: http://arxiv.org/abs/2401.07814v1
- Date: Mon, 15 Jan 2024 16:36:46 GMT
- Title: Correlated spectroscopy of electric noise with color center clusters
- Authors: Tom Delord, Richard Monge, and Carlos A. Meriles
- Abstract summary: We leverage a multi-dimensional and multi-sensor analysis of spectral diffusion to investigate the dynamics of carriers in charge traps surrounding color center clusters in diamond.
Our results can be generalized to other color centers and open intriguing opportunities for the microscopic characterization of photo-carrier dynamics in semiconductors.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: Experimental noise often contains valuable information on the interactions of
a system with its environment but establishing a relation between the measured
time fluctuations and relevant physical observables is rarely apparent. Here,
we leverage a multi-dimensional and multi-sensor analysis of spectral diffusion
to investigate the dynamics of carriers in charge traps surrounding color
center clusters in diamond. Working with nitrogen-vacancy (NV) centers sharing
the same diffraction-limited volume, we establish statistical correlations in
the spectral changes we measure as we recursively probe the optical resonances
of the cluster, which we subsequently exploit to unveil proximal traps. By
simultaneously co-monitoring the spectra of multiple NVs in the set, we show
the ability to deterministically induce Stark shifts in the observed optical
resonances, hence allowing us to identify electrostatically coupled sets of
emitters. These cross-correlated measurements allow us to determine the
relative three-dimensional positions of interacting NVs in a cluster as well as
the location and charge sign of proximal traps. Our results can be generalized
to other color centers and open intriguing opportunities for the microscopic
characterization of photo-carrier dynamics in semiconductors and for the
manipulation of nanoscale spin-qubit clusters connected via electric fields.
Related papers
- A mixed perturbative-nonperturbative treatment for strong light-matter
interactions [0.0]
We present a Lindblad-like master equation for the emitter dynamics when coupled to a general nanophotonic structure.
We illustrate the power and validity of our approach through numerical simulations in three different setups.
arXiv Detail & Related papers (2023-12-23T18:54:31Z) - Cavity-mediated collective emission from few emitters in a diamond
membrane [4.25625499448944]
We show that by coupling nitrogen-vacancy centers in a diamond membrane to a high-finesse microcavity, few, incoherent, inhomogeneous, and spatially separated emitters can enter the regime of collective emission.
We observe a super-linear power dependence of the emission rate as a hallmark of collective emission.
arXiv Detail & Related papers (2023-11-21T16:52:13Z) - Observation of mHz-level cooperative Lamb shifts in an optical atomic
clock [0.7095350526841508]
We show that the ensemble-averaged shifts can be suppressed below the level of evaluated systematic uncertainties for state-of-the-art optical atomic clocks.
Our work demonstrates that such a clock is a novel platform for studies of the quantum many-body physics of spins with long-range interactions mediated by propagating photons.
arXiv Detail & Related papers (2023-03-09T23:04:46Z) - Toward deep-learning-assisted spectrally-resolved imaging of magnetic
noise [52.77024349608834]
We implement a deep neural network to efficiently reconstruct the spectral density of the underlying fluctuating magnetic field.
These results create opportunities for the application of machine-learning methods to color-center-based nanoscale sensing and imaging.
arXiv Detail & Related papers (2022-08-01T19:18:26Z) - Probing dynamics of a two-dimensional dipolar spin ensemble using single
qubit sensor [62.997667081978825]
We experimentally investigate individual spin dynamics in a two-dimensional ensemble of electron spins on the surface of a diamond crystal.
We show that this anomalously slow relaxation rate is due to the presence of strong dynamical disorder.
Our work paves the way towards microscopic study and control of quantum thermalization in strongly interacting disordered spin ensembles.
arXiv Detail & Related papers (2022-07-21T18:00:17Z) - Observation of oscillatory Raman gain associated with two-photon Rabi
oscillations of nanofiber-coupled atoms [0.0]
Quantum emitters with a $Lambda$-type level structure enable numerous protocols and applications in quantum science and technology.
Here, we drive two-photon Rabi oscillations between the two ground states of cesium atoms.
We study the dependence of the two-photon Rabi frequency on the system parameters and observe Autler-Townes splitting in the probe transmission spectrum.
arXiv Detail & Related papers (2022-07-01T13:59:26Z) - Quantifying NV-center Spectral Diffusion by Symmetry [0.0]
spectrally narrow, spin-dependent optical transitions of nitrogen vacancy center defects in diamond can be harnessed for quantum networking applications.
Key to such networking schemes is the generation of indistinguishable photons.
Two challenges limit scalability in such systems: defect-to-defect variations of the optical transition caused by local strain variation, and spectral diffusion of the optical frequencies on repeated measurement caused by photoexcitation of nearby charge traps.
arXiv Detail & Related papers (2022-06-22T20:19:56Z) - Correlated steady states and Raman lasing in continuously pumped and
probed atomic ensembles [68.8204255655161]
We consider an ensemble of Alkali atoms that are continuously optically pumped and probed.
Due to the collective scattering of photons at large optical depth, the steady state of atoms does not correspond to an uncorrelated tensor-product state.
We find and characterize regimes of Raman lasing, akin to the model of a superradiant laser.
arXiv Detail & Related papers (2022-05-10T06:54:54Z) - Fano Resonances in Quantum Transport with Vibrations [50.591267188664666]
Quantum mechanical scattering continuum states coupled to a scatterer with a discrete spectrum gives rise to Fano resonances.
We consider scatterers that possess internal vibrational degrees of freedom in addition to discrete states.
arXiv Detail & Related papers (2021-08-07T12:13:59Z) - Visualizing spinon Fermi surfaces with time-dependent spectroscopy [62.997667081978825]
We propose applying time-dependent photo-emission spectroscopy, an established tool in solid state systems, in cold atom quantum simulators.
We show in exact diagonalization simulations of the one-dimensional $t-J$ model that the spinons start to populate previously unoccupied states in an effective band structure.
The dependence of the spectral function on the time after the pump pulse reveals collective interactions among spinons.
arXiv Detail & Related papers (2021-05-27T18:00:02Z) - Tunable Anderson Localization of Dark States [146.2730735143614]
We experimentally study Anderson localization in a superconducting waveguide quantum electrodynamics system.
We observe an exponential suppression of the transmission coefficient in the vicinity of its subradiant dark modes.
The experiment opens the door to the study of various localization phenomena on a new platform.
arXiv Detail & Related papers (2021-05-25T07:52:52Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.