We present a new template for building oblivious transfer from quantum information that we call the "fixed basis" framework. Our framework departs from prior work (eg., Crepeau and Kilian, FOCS '88) by fixing the correct choice of measurement basis used by each player, except for some hidden trap qubits that are intentionally measured in a conjugate basis. We instantiate this template in the quantum random oracle model (QROM) to obtain simple protocols that implement, with security against malicious adversaries: 1. Non-interactive random-input bit OT in a model where parties share EPR pairs a priori. 2. Two-round random-input bit OT without setup, obtained by showing that the protocol above remains secure even if the (potentially malicious) OT receiver sets up the EPR pairs. 3. Three-round chosen-input string OT from BB84 states without entanglement or setup. This improves upon natural variations of the CK88 template that require at least five rounds. Along the way, we develop technical tools that may be of independent interest. We prove that natural functions like XOR enable seedless randomness extraction from certain quantum sources of entropy. We also use idealized (i.e. extractable and equivocal) bit commitments, which we obtain by proving security of simple and efficient constructions in the QROM.
翻译:我们提出了一个用于从我们称之为“固定基础”的量子信息中进行隐蔽传输的新模板。 我们的框架不同于先前的工作( 例如, Crepeau 和 Kilian, FOCS'88), 方法是确定每个玩家所使用的测量基础的正确选择, 但一些隐藏的陷阱 Qqbits 除外, 这些陷阱是刻意以共鸣的方式测量的。 我们在量子随机或触碰模型( QROM) 中即刻使用这个模板, 以获得简单的执行协议, 并有防止恶意对手的安全性 : 1. 在缔约方共享 EPR配对前置的模型中, 非互动随机输入比OT 。 2. 通过显示上述协议即使( 潜在恶意的) OT 接收器安装 EPR 配对, 也依然安全。 我们从量子随机选择的OTOT 中改进了 CK88 模板的自然变异性, 需要至少五轮。 我们开发了技术工具, 可能具有独立的兴趣。 2. 随机的OOO 点, 我们证明自然函数 能够从简单提取的种子源中获取安全性 。