戻る
「早戻しボタン」を押すと検索画面に戻ります。 [閉じる]

コーパス検索結果 (1語後でソート)

通し番号をクリックするとPubMedの該当ページを表示します
1 ty edge, which we refer to as "mobility edge quantization".
2 sing fermionic carriers that undergo orbital quantization.
3 s an internal standard for R6G concentration quantization.
4 ems in the more standard theory of geometric quantization.
5 ctron density using the techniques of vector quantization.
6 by single-electron charging and energy-level quantization.
7 ion of elastic normal mode theory and vector quantization.
8  predicted due to the strong conduction band quantization.
9 using Poincare transformations and geometric quantization.
10 F1 score, and ROC AUC except for ALBERT with quantization.
11 uding normalization strategies and intensity quantization.
12 ctive was to investigate the impact of image quantization.
13 tum oscillation that does not rely on Landau quantization.
14 antum control and characterization of charge quantization.
15 period of which agrees with the lateral size quantization.
16  chemical potential regimes far from perfect quantization.
17 e the kinetic energy is frozen out by Landau quantization.
18 er tomography for simultaneous capillary CBF quantization.
19 ducts for enhanced detection sensitivity and quantization.
20  result in neutral Fermi surfaces and Landau quantization(4,5) in an insulator.
21               Here we present experiments on quantization accuracy of a 236-element quantum Hall arra
22    Here, we report a quantum Hall resistance quantization accuracy of three parts per billion in mono
23 1-score, and 99.30% ROC AUC; and ALBERT with quantization achieved 65.44% accuracy, 67.82% precision,
24 al neural network based on a learning vector quantization algorithm, was used to identify putative co
25 Two-dimensional electronic states due to the quantization along surface normal direction are formed i
26 oducing two tools--semiclassical phase-space quantization and a numerical implementation of a layered
27                                          The quantization and calculation methods both had an impact
28 ulti-scale refinement method based on vector quantization and force-field methods that gives excellen
29 sult in an exponential suppression of charge quantization and in a universal square-root scaling, val
30 models utilizing techniques such as pruning, quantization and knowledge distillation, resulting in mo
31 s on model compression techniques, including quantization and knowledge distillation, to significantl
32                Because of the sensors' heavy quantization and low sensitivity, we propose an inversio
33 to interesting findings of fractional charge quantization and magnetic monopoles.
34 in metals and semiconductors leads to Landau quantization and magneto-oscillatory behavior in their p
35 metric angular distribution, ruled by energy quantization and parity conservation.
36 omplexity technique based on classification, quantization and sampling of MS peaks.
37 es using co-occurrence matrices (such as the quantization and spatial directionality relationships) w
38 m, the interrelation between the conductance quantization and the topological properties of the syste
39 ctrons results in spin-dependent conductance quantization and various unusual magnetoresistive phenom
40 stilBERT with pruning, 7.12% for ALBERT with quantization, and 23.934% for ELECTRA with pruning and d
41                                  Absorptance quantization appears to be universal in 2D systems inclu
42 guity in the previously utilized energy-time quantization approach and correctly reproduces the numer
43 idant chemistry as well as the lack of valid quantization approaches have resulted in knowledge gap,
44 f states and the resultant inaccurate weight quantization are bottlenecks in developing practical mem
45                    The conditions to observe quantization are non-universal, and depend on material p
46 ument the breakdown of universal conductance quantization as many-body correlations appear.
47                                 Importantly, quantization assumes uniformly filled electron bands bel
48  diagonal resistance without Hall resistance quantization at low temperatures and low magnetic fields
49      In such devices, we observe conductance quantization at low temperatures, corresponding to balli
50 ocks are confined in separate ion traps with quantization axes aligned along non-parallel directions.
51  engineered through dynamical control of the quantization axis and Floquet engineering(10) in a two-d
52                 For both phases, the orbital quantization axis is fixed by the direction of strain.
53 ction of the total angular momentum, J, on a quantization axis labelled z) state splitting and theref
54 ter composed of satellites with the tailored quantization axis, challenging the conventional view of
55 in S = 1/2 ground state without an intrinsic quantization axis, leading to orientation-independent ma
56 ween quantum dots with a site-dependent spin quantization axis, quantum control can be established wi
57 olarization angle can arise by tailoring the quantization axis, which corresponds to the direction of
58 a characteristic dependence on the choice of quantization axis.
59 d: a quantization into a set number of bins (quantization B) and an alternative quantization with bin
60      Features were more reliable in PET with quantization B, whereas quantization W showed better res
61                                              Quantization by EPR gives a yield of 0.85 radicals per P
62                       The observed anomalous quantization challenges a Fermi liquid description of th
63                          The onset of Landau quantization coincides with a significant increase of th
64 ic Schrodinger equation, in first and second quantization, computing ground and excited states and ge
65  found to oscillate according to the Onsager quantization condition, involving only fundamental const
66 was periodic according to the London fluxoid quantization condition.
67  side branch, which does not affect the flux quantization condition.
68 ons, we engineer singular line defects whose quantization conditions, exchange statistics, and dynami
69  crossings, reaching 3.3 0.3 in units of the quantization constant.
70 of speed-up algorithms including pruning and quantization, designing a novel pixel-skipping process,
71 factors including linearity, read noise, and quantization distortion.
72 er, few studies can reproduce the zero-field quantization due to poor sample quality, and as a result
73 d cycle in the network can be detected by a "quantization effect" of node states, that exists as a di
74                                       Strong quantization effects and tuneable near-infrared photolum
75   For devices widths [Formula: see text] nm, quantization effects are strong and it is shown that the
76                    This calculation includes quantization effects on bound vibrations but not on the
77                    In order to evaluate size quantization effects on the conductivity, we consider tw
78              For [Formula: see text] nm, the quantization effects practically vanish and the conducti
79     The enhanced quality manifests in Landau quantization emerging at magnetic fields as low as ~5 mi
80                                              Quantization error owing to the finite voxel representat
81 s data, the DTW-SOM algorithm produced fewer quantization errors and more detailed diurnal patterns.
82 ific artifacts such as ringing, speckle, and quantization errors routinely occur, yet are not explici
83 le strips formed at the edges result in Hall quantization, even if the bulk is compressible.
84                                      Current quantization exists, however, only in a narrow range of
85                                              Quantization follows from the fact that the instantaneou
86 etamaterial which exploits the magnetic flux quantization for switching.
87 g accuracy when compared with uniform weight quantization for vector matrix multiplication, an essent
88               In a magnetic field B, fluxoid quantization generates a periodic modulation of the edge
89                    With an easily adjustable quantization granularity, the approach allows a user to
90                                        Model quantization had minimal effect on performance.
91  microwave radiation, which leads to current quantization, has been proposed as an effect that is dua
92             Both normalization and intensity quantization have an effect on the level of repeatabilit
93               Achieving a robust conductance quantization, however, has proven challenging for helica
94 en these configurations and evidence of size quantization in 3R-TaS(2) inclusions within 2H-TaS(2).
95                     With the onset of Landau quantization in a magnetic field of a few tesla, where t
96 we report experimental observation of Landau quantization in a two-dimensional insulator, monolayer t
97                Direct observation of current quantization in JJs would confirm the synchronization of
98 he observation of half-integer magnetic flux quantization in mesoscopic rings of superconducting beta
99 s: from a 4-bit uniform to 3-bit non-uniform quantization in phase.
100   We give an explanation of the emergence of quantization in pilot-wave theory in terms of instabilit
101 roviding for more accessible use of absolute quantization in research and in diagnostics.
102             Today, the persistence of charge quantization in small, weakly connected conductors allow
103  of co-evolutionary ecosystems and show this quantization in systems of species evolution, epidemiolo
104 biguously confirm the identification of size quantization in the constriction.
105 ant, the multipole polarization, retains its quantization in the DAA, yet changes its meaning by beco
106                                      Similar quantization in the phonon spectra has been difficult to
107 ring the shot noise, a consequence of charge quantization, in super-conductor/insulator/ferromagnet (
108  Two quantization methods were considered: a quantization into a set number of bins (quantization B)
109 an be significantly increased such that full quantization is achieved at 300 mK, and zero-field Hall
110                    Such a low onset field of quantization is comparable to the behaviour of high-mobi
111                                      Angular quantization is considered to be a consequence of the sy
112 approaching the ballistic limit, that charge quantization is destroyed by quantum fluctuations, and s
113                                Magnetic flux quantization is one of the defining properties of a supe
114 hat has conducting states with mobility edge quantization is proposed and was applied to develop mult
115                                          The quantization is realized by the strong cross-phase modul
116 e layer (SL) MBT sample, in which zero-field quantization is successfully achieved.
117 e spin-split nu = 2 edge channels and charge quantization is sufficient to explain the frequency doub
118  a standard deviation of less than 0.01 at a quantization level of three, using 10,000 samples of cha
119           Since the early days of Dirac flux quantization, magnetic monopoles have been sought after
120   We found that noise, resolution, choice of quantization method and the number of gray levels in the
121 ow the ADC map is constructed, the choice of quantization method, and the number of gray levels in th
122 ilar resolutions and noise levels, using one quantization method, and the same number of gray levels
123                                          Our quantization method, specifically designed for supercond
124 nce remains unclear due to the lack of valid quantization method.
125                                          Two quantization methods were considered: a quantization int
126 R) signals results in a decreasing signal-to-quantization noise ratio (SQNR) over the acquisition tim
127 angle, poor scalability, and the presence of quantization noise, unwanted diffractive orders and zero
128  gains in the current transducer, minimizing quantization noise.
129 stal with a well-defined orientation of spin quantization NV axes is attached to the fiber tip, allow
130 of Atiyah and Weinstein for the index of the quantization of a contact transformation between cospher
131 hertz superconducting qubit, we observed the quantization of a megahertz radio-frequency resonator, c
132           In this study, we investigated the quantization of acoustic and elastic waves using general
133               This is the first experimental quantization of an ortho fluorine effect as predicted by
134         An algorithm based on scale-specific quantization of biorthogonal wavelet coefficients was de
135 e primary KIE is mainly a consequence of the quantization of bound vibrations.
136  collection of Landau levels that arise from quantization of Brown-Zak minibands recurring at rationa
137                       In quantum fluids, the quantization of circulation forbids the diffusion of a v
138 reased complexity arises from superfluidity, quantization of circulation, and, at finite temperatures
139 he edge-mode transport leads to the observed quantization of conductance close to multiples of G0 = 2
140 l consequences, most famously explaining the quantization of electric charge.
141    One striking result in this domain is the quantization of electrical conduction, observed in a qua
142    Quantum oscillations originating from the quantization of electron cyclotron orbits provide sensit
143                             Control over the quantization of electrons in quantum wells is at the hea
144 modified by single-electron charging and the quantization of energy levels.
145           Based upon, we further studied the quantization of enthalpy and entropy from a reversible t
146                                              Quantization of excitonic motion manifests in the measur
147                                          The quantization of field variables is established as a cons
148 as observed directly in systems in which the quantization of flow could not be observed, and indirect
149 port a blood test, based on the simultaneous quantization of four analytes (leptin, prolactin, osteop
150                                          The quantization of gravity is widely believed to result in
151 n provide the first experimental clue of the quantization of gravity.
152 lectronic band structures leads to a precise quantization of Hall resistance without any external mag
153 wn to few tens of mK are needed to reach the quantization of Hall resistance, which is two orders of
154    Theoretically, it has been shown that the quantization of heat potentials as a consequence of isom
155             This paper deals with the second quantization of interacting relativistic Fermionic and B
156 r with sufficient sensitivity to resolve the quantization of its energy.
157 le moves freely inside the cage and exhibits quantization of its translational and rotational degrees
158 rmal threshold quantum yield is based on the quantization of light to minimize overall measurement un
159     Prominent examples include the anomalous quantization of magneto-electric coupling, half-fermion
160                                       Key to quantization of mineral formation is the use of first-de
161                     Here we demonstrate that quantization of molecular rotation plays a key role in c
162                                 The value of quantization of neutrophil PRV-1 mRNA, platelet c-mpl ex
163 elop an analytic strategy to demonstrate the quantization of nonlinear Berry phase due to reflection
164  formulate our theory by developing a second quantization of paraparticles that naturally includes ex
165 sistivity: the first can be explained by the quantization of spin density waves due to the finite fil
166  image both the spatial interference and the quantization of such confined plasmonic fields.
167                 This paper is devoted to the quantization of the degree of nonlinearity of the relati
168                                 Although the quantization of the electrical conductance of one-dimens
169                                          The quantization of the electromagnetic field leads directly
170 e thickness down to such scales leads to the quantization of the electronic states, endowing 2DGFs wi
171            In order to understand the Landau quantization of the ensuing electronic spectrum, a gener
172                        An amazingly accurate quantization of the Hall conductance, now enshrined in q
173 themselves in transport experiments with the quantization of the Hall resistance and a vanishing long
174                                    The exact quantization of the Hall resistance and the zero of the
175                                              Quantization of the Hall resistance arises from occupati
176                     The effect comprises the quantization of the Hall resistance in two-dimensional e
177  our knowledge, successful visualization and quantization of the interface between live cells and a s
178 icant number of vesicles, showing correlated quantization of the lamellarity.
179  This time evolution is a consequence of the quantization of the light field in the cavity and the no
180 3D Dirac Hamiltonian suggests that the quasi-quantization of the observed Hall response emerges from
181 o the partitioned charge), we first observed quantization of the partitioned charge q = e*/e = n, wit
182                                          But quantization of the radiation field is required to expla
183 ultracold energy regime lead to an effective quantization of the scattering phase shift enabling maxi
184  lattices, which by Euler's theorem requires quantization of their cone angles.
185 ur results establish the universality of the quantization of thermal conductance for fractionally cha
186 xperimentally established, demonstrating the quantization of thermal conductance has been challenging
187                               We observe the quantization of this response, which we term the rotatio
188 ensional model that captures the topological quantization of transport in the quantum Hall effect usi
189 anning tunnelling spectroscopy we follow the quantization of unoccupied molecular states as a functio
190 lated the low-cutoff frequency and intensity quantization of vocoder envelopes to simulate psychophys
191  of our model's radiomic feature in terms of quantization on a different lung cancer CT dataset using
192 , its electronic state shows distinct Landau quantization on application of a magnetic field, and the
193 age-level representations by applying vector quantization on the image descriptors.
194 onfiguration exists in a plasma and exhibits quantization owing to its small size.
195 better understanding of the diverse magnetic quantization phenomena in 2D condensed-matter materials.
196                 We show that the phase-space quantization picture fixes an ambiguity in the previousl
197                            The observed Hall quantization plateaus for our thicker Mn(Bi(1-x)Sb(x))(2
198                                        Image quantization played a major role in feature repeatabilit
199                 In this article we develop a quantization procedure for Chaplygin Hamiltonizable nonh
200                    The effect of model size, quantization, prompting strategies, output formatting, a
201  how these logical relations based on coarse quantization reflect corresponding relations in the cont
202                        By applying Onsager's quantization rule(15), we extract the momentum.
203   More specifically, we propose a stochastic quantization scheme and prove that it can effectively es
204 g significant performance degradation due to quantization sensitivity in its already compressed archi
205 he multiple vortex bound states with integer-quantization sequences can be accurately reproduced by o
206 ion by performing a detailed analysis of the quantization states in Mn(Bi(1-x)Sb(x))(2)Te(4) dual-gat
207  repeatability also depended strongly on the quantization step, with different optimal choices for ea
208 large-scale single-cell omics data through a quantization step.
209 ty reduction problem by applying pruning and quantization techniques to an NN-based optical channel e
210 ocity, we observed an acoustic phonon energy quantization that depends on the energy gap, the width,
211  as principal components analysis and vector quantization, that learn holistic, not parts-based, repr
212  a quantum dot with strong strain and strong quantization, the heavy hole with spin-3/2 behaves as a
213 ies that different mechanisms underlie their quantization: the additive response of nonsaturated AMPA
214 uperfluidity can be detected by voltage-drop quantization through a combination of quantum geometry a
215 ights LLMs via low-rank adaptation and 4-bit quantization to bidirectional encoder representations fr
216 wledge distillation, structured pruning, and quantization to significantly increase the computational
217    We discuss some applications of signature quantization to the representation theory of compact Lie
218 applied pruning, knowledge distillation, and quantization to transformer-based models (BERT, DistilBE
219 Curie temperature for magnetic ordering, and quantization to within 0.1% of the von Klitzing constant
220 in vector space, with tree-structured vector quantization (TSVQ).
221 e ultralow temperatures needed to reach full quantization-usually below 100 mK in either Cr- or V-dop
222 formance, we propose a variance-aware weight quantization (VAQ) method.
223           This paper proposes a novel vector quantization (VQ) algorithm for restoring movie frames b
224 reliable in PET with quantization B, whereas quantization W showed better results in CT.
225 ative quantization with bins of fixed width (quantization W).
226                                 This current quantization was recently demonstrated in superconductin
227                In the framework of geometric quantization we explicitly construct, in a uniform fashi
228 rategy in which the range and density of the quantization weights adapt to accumulated input statisti
229          We explain the observed conductance quantization, which is fractional in the bipolar regime
230                  We find that the process of quantization, which is necessary for all digital communi
231  we explore the complete evolution of charge quantization while scanning the entire range of connecti
232  of bins (quantization B) and an alternative quantization with bins of fixed width (quantization W).
233  Weyl nodal ring states show distinct Landau quantization with clear spin splitting upon application
234 L are generic for any metal featuring Landau quantization with several orbits.
235                             The Landau level quantization would most likely capture only the fermioni
236  Group (JPEG) or wavelet-based trellis-coded quantization (WTCQ) algorithms at compression ratios of

 
Page Top