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Quantum States Transfer by Analogous Bell States
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作者 MEI Di LI Chong YANG Guo-Hui SONG He-Shan 《Communications in Theoretical Physics》 SCIE CAS CSCD 2008年第2期347-350,共4页
Transmitting quantum states by channels of analogous Bell states is studied in this paper. We analyze the transmitting process. constructed the probabilitic unitary operator, and gain the largest successful transfer q... Transmitting quantum states by channels of analogous Bell states is studied in this paper. We analyze the transmitting process. constructed the probabilitic unitary operator, and gain the largest successful transfer quantum state probability. 展开更多
关键词 quantum state transfer analogous Bell state transfer quantum state probability
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Hierarchical and probabilistic quantum state sharing via a non-maximally entangled |χ〉state 被引量:22
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作者 彭家寅 柏明强 莫智文 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第1期74-79,共6页
A scheme that probabilistically realizes hierarchical quantum state sharing of an arbitrary unknown qubit state with a four-qubit non-maximally entangled |χ state is presented in this paper. In the scheme, the sender... A scheme that probabilistically realizes hierarchical quantum state sharing of an arbitrary unknown qubit state with a four-qubit non-maximally entangled |χ state is presented in this paper. In the scheme, the sender Alice distributes a quantum secret with a Bell-state measurement and publishes her measurement outcomes via a classical channel to three agents who are divided into two grades. One agent is in the upper grade, while the other two agents are in the lower grade. Then by introducing an ancillary qubit, the agent of the upper grade only needs the assistance of any one of the other two agents for probabilistically obtaining the secret, while an agent of the lower grade needs the help of both the other two agents by using a controlled-NOT operation and a proper positive operator-valued measurement instead of the usual projective measurement. In other words, the agents of two different grades have different authorities to reconstruct Alice's secret in a probabilistic manner. The scheme can also be modified to implement the threshold-controlled teleportation. 展开更多
关键词 |χ〉 state hierarchical quantum state sharing asymmetetric distribution positive operator-valued measurement
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Probabilistic teleportation of an arbitrary GHZ-class state with a pure entangled two-particle quantum channel and its application in quantum state sharing 被引量:3
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作者 周萍 李熙涵 +1 位作者 邓富国 周宏余 《Chinese Physics B》 SCIE EI CAS CSCD 2007年第10期2867-2874,共8页
This paper presents a scheme for probabilistic teleportation of an arbitrary GHZ-class state with a pure entangled two-particle quantum channel. The sender Alice first teleports the coefficients of the unknown state t... This paper presents a scheme for probabilistic teleportation of an arbitrary GHZ-class state with a pure entangled two-particle quantum channel. The sender Alice first teleports the coefficients of the unknown state to the receiver Bob, and then Bob reconstructs the state with an auxiliary particle and some unitary operations if the teleportation succeeds. This scheme has the advantage of transmitting much less particles for teleporting an arbitrary GHZ-class state than others. Moreover, it discusses the application of this scheme in quantum state sharing. 展开更多
关键词 quantum teleportation arbitrary GHZ-class state pure entanglement quantum state sharing
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Teleportations of Mixed States and Multipartite Quantum States 被引量:4
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作者 YU Chang-Shui WANG Ya-Hong SONG He-Shan 《Communications in Theoretical Physics》 SCIE CAS CSCD 2007年第6期1041-1044,共4页
In this paper, we propose a protocol to deterministically teleport an unknown mixed state of qubit by utilizing a maximally bipartite entangled state of qubits as quantum channel. Ira non-maximally entangled bipartite... In this paper, we propose a protocol to deterministically teleport an unknown mixed state of qubit by utilizing a maximally bipartite entangled state of qubits as quantum channel. Ira non-maximally entangled bipartite pure state is employed as quantum channel, the unknown mixed quantum state of qubit can be teleported with 1 -√ 1- C^2 probability, where C is the concurrence of the quantum channel. The protocol can also be generalized to teleport a mixed state of qudit or a multipartite mixed state. More important purpose is that, on the basis of the protocol, the teleportation of an arbitrary multipartite (pure or mixed) quantum state can be decomposed into the teleportation of each subsystem by employing separate entangled states as quantum channels. In the case of deterministic teleportation, Bob only needs to perform unitary transformations on his single particles in order to recover the initial teleported multipartite quantum state. 展开更多
关键词 TELEPORTATION mixed state multipartite quantum state
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High entanglement generation and high fidelity quantum state transfer in a non-Markovian environment 被引量:3
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作者 李艳玲 方卯发 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第10期85-90,共6页
This paper analyses a system of two independent qubits off-resonantly coupled to a common non-Maxkovian reservoir at zero temperature. Compared with the results in Markovian reservoirs, we find that much higher values... This paper analyses a system of two independent qubits off-resonantly coupled to a common non-Maxkovian reservoir at zero temperature. Compared with the results in Markovian reservoirs, we find that much higher values of entanglement can be obtained for an initially factorized state of the two-qubit system. The maximal value of the entanglement increases as the detuning grows. Moreover, the entanglement induced by non-Maxkovian environments is more robust against the asymmetrical couplings between the two qubits and the reservoir. Based on this system, we also show that quantum state transfer can be implemented for arbitrary input states with high fidelity in the non-Markovian regime rather than the Markovian case in which only some particular input states can be successfully transferred. 展开更多
关键词 non-Markovian environment entanglement generation quantum state transfer
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Probabilistic Teleportation of Multi-particle d-Level Quantum State 被引量:4
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作者 CAOMin ZHUShi-Qun 《Communications in Theoretical Physics》 SCIE CAS CSCD 2005年第5期803-805,共3页
The general scheme for teleportation of a multi-particle d-level quantumstate is presented when m pairs of partially entangled particles are utilized as quantum channels.The probabilistic teleportation can be achieved... The general scheme for teleportation of a multi-particle d-level quantumstate is presented when m pairs of partially entangled particles are utilized as quantum channels.The probabilistic teleportation can be achieved with a successful probability of Π from N=0 to d-1of (C_0~N)~2/d~M, which is determined by the smallest coefficients of each entangled channels. 展开更多
关键词 MULTI-PARTICLE d-level quantum state probabilistic teleportation
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Tripartite Arbitrary Two-Qutrit Quantum State Sharing 被引量:3
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作者 YUAN Hao LIU Yi-Min +1 位作者 HAN Lian-Fang ZHANG Zhan-Jun 《Communications in Theoretical Physics》 SCIE CAS CSCD 2008年第5期1191-1194,共4页
A tripartite scheme for securely sharing an arbitrary unknown two-qutrit state is proposed, where two generalized Greenberger-Horne-Zeilinger (GHZ) states serve as the quantum channel linking the three legitimate pa... A tripartite scheme for securely sharing an arbitrary unknown two-qutrit state is proposed, where two generalized Greenberger-Horne-Zeilinger (GHZ) states serve as the quantum channel linking the three legitimate parties. The quantum information (i.e., the arbitrary unknown two-qutrit state) from the sender can be split in such a way that it can be reconstructed deterministically by any agent via a proper unitary operation provided that both agents collaborates together. Moreover, the generalization of the tripartite scheme to more-party case is also outlined. 展开更多
关键词 quantum state sharing arbitrary two-qutrit state generalized GHZ state
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Quantum state transfer between atomic ensembles trapped in separate cavities via adiabatic passage 被引量:2
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作者 张春玲 陈美锋 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第7期130-135,共6页
We propose a new approach for quantum state transfer(QST) between atomic ensembles separately trapped in two distant cavities connected by an optical fiber via adiabatic passage. The three-level Λ-type atoms in eac... We propose a new approach for quantum state transfer(QST) between atomic ensembles separately trapped in two distant cavities connected by an optical fiber via adiabatic passage. The three-level Λ-type atoms in each ensemble dispersively interact with the nonresonant classical field and cavity mode. By choosing appropriate parameters of the system, the effective Hamiltonian describes two atomic ensembles interacting with "the same cavity mode" and has a dark state. Consequently, the QST between atomic ensembles can be implemented via adiabatic passage. Numerical calculations show that the scheme is robust against moderate fluctuations of the experimental parameters. In addition, the effect of decoherence can be suppressed effectively. The idea provides a scalable way to an atomic-ensemble-based quantum network, which may be reachable with currently available technology. 展开更多
关键词 quantum state transfer atomic ensemble cavity QED
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Remote Three-Party Quantum State Sharing Based on Three-Atom Entangled States Assisted by Cavity QED and Flying Qubits 被引量:2
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作者 王铁军 邓富国 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第5期795-803,共9页
We present a remote three-party quantum state sharing (QSTS) scheme with three-atom Greenberger- Horne-Zeilinger (GHZ) states assisted by cavity QED and flying qubits. It exploits some photons to act as the flying... We present a remote three-party quantum state sharing (QSTS) scheme with three-atom Greenberger- Horne-Zeilinger (GHZ) states assisted by cavity QED and flying qubits. It exploits some photons to act as the flying qubits for setting up the quantum channel securely with three-atom systems in a GHZ state, which maybe make this remote QSTS scheme more practical than some other schemes based on atom systems only or ion-trap systems as photons interact with their environments weakly. The coherence of the stationary atom qubits in cavities provides the convenience for the parties in QSTS to check eavesdropping, different from entangled photon systems. Moreover, the present scheme works in a collective-noise condition and it may be more practical than others in applications in future. 展开更多
关键词 quantum state sharing three-atom GHZ state flying qubits collective noise
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Perfect Transfer of Many-Particle Quantum State via High-Dimensional Systems with Spectrum-Matched Symmetry 被引量:3
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作者 LI Ying SONG Zhi SUN Chang-Pu 《Communications in Theoretical Physics》 SCIE CAS CSCD 2007年第3X期445-448,共4页
The quantum state transmission through the medium of high-dimensional many-particle system (boson or spinless fermion) is generally studied with a symmetry analysis. We discover that, if the spectrum of a Hamiltonia... The quantum state transmission through the medium of high-dimensional many-particle system (boson or spinless fermion) is generally studied with a symmetry analysis. We discover that, if the spectrum of a Hamiltonian matches the symmetry of a fermion or boson system in a certain fashion, a perfect quantum state transfer can be implemented without any operation on the medium with pre-engineered nearest neighbor (NN). We also study a simple but realistic near half-filled tight-bindlng fermion system wlth uniform NN hopping integral. We show that an arbitrary many-particle state near the fermi surface can be perfectly transferred to its translational counterpart. 展开更多
关键词 high-dimensional many-particle system perfect quantum state transfer
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Scheme for Generalized Quantum State Sharing of a Single-Qubit State in Cavity QED 被引量:2
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作者 YUAN Hao QUAN Gui-Ying 《Communications in Theoretical Physics》 SCIE CAS CSCD 2009年第3期424-428,共5页
An experimentally feasible scheme for generalized quantum state sharing of an arbitrary unknown single- qubit state in cavity QED is presented. Using a generalized Greenberger-Horne-Zeilinger (GHZ) state as the quan... An experimentally feasible scheme for generalized quantum state sharing of an arbitrary unknown single- qubit state in cavity QED is presented. Using a generalized Greenberger-Horne-Zeilinger (GHZ) state as the quantum channel among the three parties, the quantum information (i.e. the single-qubit state) from the sender can be split in such a way that the information can be recovered if and only if both receivers collaborate. Moreover, the scheme is insensitive to both the effects of thermal field and cavity decay. 展开更多
关键词 generalized quantum state sharing generalized Greenberger-Horne-Zeilinger (GHZ) state Bell- state measurement single-qubit projective measurement
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High-dimensional quantum state transfer in a noisy network environment 被引量:1
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作者 秦伟 李俊林 龙桂鲁 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第4期63-69,共7页
We propose and analyze an efficient high-dimensional quantum state transfer protocol in an XX coupling spin network with a hypercube structure or chain structure. Under free spin wave approximation, unitary evolution ... We propose and analyze an efficient high-dimensional quantum state transfer protocol in an XX coupling spin network with a hypercube structure or chain structure. Under free spin wave approximation, unitary evolution results in a perfect high-dimensional quantum swap operation requiring neither external manipulation nor weak coupling. Evolution time is independent of either distance between registers or dimensions of sent states, which can improve the computational efficiency. In the low temperature regime and thermodynamic limit, the decoherence caused by a noisy environment is studied with a model of an antiferromagnetic spin bath coupled to quantum channels via an Ising-type interaction. It is found that while the decoherence reduces the fidelity of state transfer, increasing intra-channel coupling can strongly suppress such an effect. These observations demonstrate the robustness of the proposed scheme. 展开更多
关键词 quantum state transfer quantum spin HYPERCUBES spin wave
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Deep Learning Quantum States for Hamiltonian Estimation 被引量:1
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作者 Xinran Ma Z.C.Tu Shi-Ju Ran 《Chinese Physics Letters》 SCIE CAS CSCD 2021年第11期1-6,共6页
Human experts cannot efficiently access physical information of a quantum many-body states by simply "reading"its coefficients, but have to reply on the previous knowledge such as order parameters and quantu... Human experts cannot efficiently access physical information of a quantum many-body states by simply "reading"its coefficients, but have to reply on the previous knowledge such as order parameters and quantum measurements.We demonstrate that convolutional neural network(CNN) can learn from coefficients of many-body states or reduced density matrices to estimate the physical parameters of the interacting Hamiltonians, such as coupling strengths and magnetic fields, provided the states as the ground states. We propose QubismNet that consists of two main parts: the Qubism map that visualizes the ground states(or the purified reduced density matrices) as images, and a CNN that maps the images to the target physical parameters. By assuming certain constraints on the training set for the sake of balance, QubismNet exhibits impressive powers of learning and generalization on several quantum spin models. While the training samples are restricted to the states from certain ranges of the parameters, QubismNet can accurately estimate the parameters of the states beyond such training regions. For instance, our results show that QubismNet can estimate the magnetic fields near the critical point by learning from the states away from the critical vicinity. Our work provides a data-driven way to infer the Hamiltonians that give the designed ground states, and therefore would benefit the existing and future generations of quantum technologies such as Hamiltonian-based quantum simulations and state tomography. 展开更多
关键词 CNN MSE RDM image HAMILTONIAN Deep Learning quantum states for Hamiltonian Estimation quantum
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An Alternative Scheme for Transferring Quantum States and Preparing a Quantum Network in Cavity QED 被引量:1
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作者 YANG Zhen-Biao SU Wan-Jun 《Communications in Theoretical Physics》 SCIE CAS CSCD 2007年第6期1037-1040,共4页
An alternative scheme is proposed to transfer quantum states and prepare a quantum network in cavity QED. It is based on the interaction of a two-mode cavity field with a three-level V-type atom. In the scheme, the at... An alternative scheme is proposed to transfer quantum states and prepare a quantum network in cavity QED. It is based on the interaction of a two-mode cavity field with a three-level V-type atom. In the scheme, the atom-cavity field interaction is resonant, thus the time required to complete the quantum state transfer process is greatly shortened, which is very important in view of decoherence. Moreover, the present scheme does not require one mode of the cavities to be initially prepared in one-photon state, thus it is more experimentally feasible than the previous ones. 展开更多
关键词 quantum states transfer quantum network cavity QED
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An Asymmetric Controlled Bidirectional Quantum State Transmission Protocol 被引量:1
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作者 Yiru Sun Yuling Chen +1 位作者 Haseeb Ahmad Zhanhong Wei 《Computers, Materials & Continua》 SCIE EI 2019年第4期215-227,共13页
In this paper,we propose an asymmetric controlled bidirectional transmission protocol.In the protocol,by using the thirteen-qubit entangled state as the quantum channel,Alice can realize the transmission of a two-qubi... In this paper,we propose an asymmetric controlled bidirectional transmission protocol.In the protocol,by using the thirteen-qubit entangled state as the quantum channel,Alice can realize the transmission of a two-qubit equatorial state for Bob and Bob can transmit a four-qubit equatorial state for Alice under the control of Charlie.Firstly,we give the construction of the quantum channel,which can be done by performing several H and CNOT operations.Secondly,through implementing the appropriate measurements and the corresponding recovery operations,the desired states can be transmitted simultaneously,securely and deterministically.Finally,we analyze the performance of the protocol,including the efficiency,the necessary operations and the classical communication costs.And then,we describe some comparisons with other protocols.Since our protocol does not require auxiliary particles and additional operations,the classic communication costs less while achieving the multi-particle bidirectional transmission,so the overall performance of the protocol is better. 展开更多
关键词 CONTROLLED ASYMMETRIC bidirectional quantum state transmission remote state preparation
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Controlling Quantum State Transfer in Spin Chain with Confined Field 被引量:1
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作者 CHEN Bing SONG Zhi 《Communications in Theoretical Physics》 SCIE CAS CSCD 2006年第4X期749-754,共6页
As a demonstration of the spectrum-parity matching condition (SPMC) for quantum state transfer, we investigate the propagation of single-magnon state in the Heisenberg chain in the confined external tangent magnetic... As a demonstration of the spectrum-parity matching condition (SPMC) for quantum state transfer, we investigate the propagation of single-magnon state in the Heisenberg chain in the confined external tangent magnetic field analytically and numerically. It shows that the initial Gaussian wave packet can be retrieved at the counterpart location near-perfectly over a longer distance if the dispersion relation of the system meets the SPMC approximately. 展开更多
关键词 quantum state transfer spin chain confined field
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A Method for Transferring an Unknown Quantum State and Its Application 被引量:1
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作者 YAN Feng-Li HUO Hai-Rui 《Communications in Theoretical Physics》 SCIE CAS CSCD 2007年第4期629-632,共4页
We suggest a method for transferring an unknown quantum state. In this method the sender Alice first applies a controlled-not operation on the particle in the unknown quantum state and an ancillary particle which she ... We suggest a method for transferring an unknown quantum state. In this method the sender Alice first applies a controlled-not operation on the particle in the unknown quantum state and an ancillary particle which she wants to send to the receiver Bob. Then she sends the ancillary particle to Bob. When Alice is informed by Bob that the ancillary particle is received, she performs a local measurement on her particle and sends Bob the outcome of the local measurement via a classical channel. Depending on the outcome Bob can restore the unknown quantum state, which Alice destroyed, on the ancillary particle successfully. As an application of this method we propose a quantum secure direct communication protocol. By introducing the decoy qubits the security of the scheme is guaranteed. 展开更多
关键词 transferring unknown quantum state secure direct communication controlled-not operation
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Fast achievement of quantum state transfer and distributed quantum entanglement by dressed states 被引量:1
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作者 Liang Tian Li-Li Sun +5 位作者 Xiao-Yu Zhu Xue-Ke Song Lei-Lei Yan Er-Jun Liang Shi-Lei Su Mang Feng 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第5期107-118,共12页
We propose schemes to realize quantum state transfer and prepare quantum entanglement in coupled cavity and cavity-fiber-cavity systems,respectively,by using the dressed state method.We first give the expression of pu... We propose schemes to realize quantum state transfer and prepare quantum entanglement in coupled cavity and cavity-fiber-cavity systems,respectively,by using the dressed state method.We first give the expression of pulses shape by using dressed states and then find a group of Gaussian pulses that are easy to realize in experiment to replace the ideal pulses by curve fitting.We also study the influence of some parameters fluctuation,atomic spontaneous emission,and photon leakage on fidelity.The results show that our schemes have good robustness.Because the atoms are trapped in different cavities,it is easy to perform different operations on different atoms.The proposed schemes have the potential applications in dressed states for distributed quantum information processing tasks. 展开更多
关键词 quantum state transfer dressed state method distributed quantum information processing
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Probabilistic joint remote preparation of a high-dimensional equatorial quantum state 被引量:1
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作者 詹佑邦 张群永 施锦 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第8期133-138,共6页
This paper proposes a scheme for probabilistic joint remote preparation of an arbitrary high-dimensional equatorial quantum state by using high-dimensional single-particle orthogonal projective measurement and appropr... This paper proposes a scheme for probabilistic joint remote preparation of an arbitrary high-dimensional equatorial quantum state by using high-dimensional single-particle orthogonal projective measurement and appropriate unitary operation. As a special case, a scheme of joint remote preparation of a single-qutrit equatorial state is presented in detail. The scheme is also generalized to the multi-party high-dimensional case. It shows that, only if when all the senders collaborate with each other, the receiver can reconstruct the original state with a certain probability. 展开更多
关键词 probabilistic joint remote preparation high-dimensional equatorial quantum state single-qudit projective measurement
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Quantum state measurement in double quantum dots with a radio-frequency quantum point contact
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作者 严蕾 王海霞 +1 位作者 殷雯 王芳卫 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第2期87-92,共6页
We study the dynamics of two electron spins in coupled quantum dots (CQDs) monitored by a quantum point contact (QPC) detector. Their quantum state can be measured by embedding the QPC in an LC circuit. We derive ... We study the dynamics of two electron spins in coupled quantum dots (CQDs) monitored by a quantum point contact (QPC) detector. Their quantum state can be measured by embedding the QPC in an LC circuit. We derive the Bloch-type rate equations of the reduced density matrix for CQDs. Special attention is paid to the numerical results for the weak measurement condintion under a strong Coulomb interaction. It is shown that the evolution of QPC current always follows that of electron occupation in the right dot. In addition, we find that the output voltage of the circuit can reflect the evolution of QPC current when the circuit and QPC are approximately equal in frequency. In particular, the wave shape of the output voltage can be improved by adjusting the circuit resonance frequency and bandwidth. 展开更多
关键词 MEASUREMENT quantum state output voltage circuit parameter
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